Piovesan, Damiano

Link to this page

Authority KeyName Variants
orcid::0000-0001-8210-2390
  • Piovesan, Damiano (5)
Projects
Application of the EIIP/ISM bioinformatics platform in discovery of novel therapeutic targets and potential therapeutic molecules European Union's Horizon 2020 research and innovation programme [778247]. Funding for open access charge: European Union's Horizon 2020 research and innovation programme [778247]
Agence Nationale de la Recherche [ANR-14-CE10-0021] Agence Nationale de la Recherche [ANR-17-CE12-0016]
Agencia Nacional de Promocion Cientifica y Tecnologica (ANPCyT) of Argentina [PICT-2015/3367] Agencia Nacional de Promocion Cientifica y Tecnologica (ANPCyT) of Argentina [PICT2017/1924]
Australian Research Council [DP180102060] Carlsberg Distinguished Fellowship [CF18-0314]
Consejo Nacional de Ciencia y Tecnologia (CONACyT) [215503] COST Action BM1405 NGP-net, ELIXIR-IIB, Hungarian Academy of Sciences [LP2014-16], Hungarian Scientific Research Fund [OTKA K 108798], AIRC Research Fellowship, Spanish Ministerio de Educacion Cultura i Deporte PhD Fellowship, Mexican National Council for Science and Technology (CONACYT) [215503], Grant PortoNeuroDRIve'i3S - Norte Portugal Regional Operational Programme (NORTE), under the PORTUGAL Partnership Agreement, through the European Regional Development Fund (ERDF), Direction Generale des Armees, Aix-Marseille University PhD Fellowship, OTKA Grant [PD-OTKA 108772], French Ministry of National Education, Research and Technology PhD Fellowship, ICREAAcademia Award, Odysseus Grant from Research Foundation Flanders (FWO) [G.0029.12], AIRC IG Grant [17753], Italian Ministry of Health [GR-2011-02347754, GR-2011-02346845], Swedish Research Council Grant [VR-NT 2012-5046]
Danmarks Grundforskningsfond [DNRF125] ELIXIR
Elixir-GR, Action 'Reinforcement of the Research and Innovation Infrastructure', Operational Programme 'Competitiveness, Entrepreneurship and Innovation' [NSRF] European Regional Development Fund [POCI01-0145-FEDER-029221]
European Regional Development Fund [POCI-01-0145-FEDER-031173] Hungarian Academy of Sciences 'Lendulet' grant [LP2014-18]
Hungarian Academy of Sciences [LP2014-18] Hungarian Academy of Sciences [PREMIUM-2017-48]
Hungarian Ministry for Innovation and Technology ELTE Thematic Excellence Programme [ED-18-1-2019-0030] Hungarian National Research, Development, and Innovation Office (NKFIH) [FK-128133]
Hungarian Scientific Research Fund [K124670] Hungarian Scientific Research Fund [K131702]
ICREA Molecular determinants for tumor marker design
Italian Ministry of Health Young Investigator Grant [GR-2011-02347754] Italian Ministry of University and Research - PRIN 2017 [2017483NH8]
Japan Agency for Medical Research and Development [16cm0106320h0001] Ministerio de Economia y Competitividad (MINECO) [BIO2016-78310-R]
National Natural Science Foundation of China [11701296] National Natural Science Foundation of China [31970649]

Author's Bibliography

Critical assessment of protein intrinsic disorder prediction

Necci, Marco; Piovesan, Damiano; Tosatto, Silvio C. E.; Davidović, Radoslav S.; Veljković, Nevena V.

(2021)

TY  - JOUR
AU  - Necci, Marco
AU  - Piovesan, Damiano
AU  - Tosatto, Silvio C. E.
AU  - Davidović, Radoslav S.
AU  - Veljković, Nevena V.
PY  - 2021
UR  - https://vinar.vin.bg.ac.rs/handle/123456789/9698
AB  - Intrinsically disordered proteins, defying the traditional protein structure–function paradigm, are a challenge to study experimentally. Because a large part of our knowledge rests on computational predictions, it is crucial that their accuracy is high. The Critical Assessment of protein Intrinsic Disorder prediction (CAID) experiment was established as a community-based blind test to determine the state of the art in prediction of intrinsically disordered regions and the subset of residues involved in binding. A total of 43 methods were evaluated on a dataset of 646 proteins from DisProt. The best methods use deep learning techniques and notably outperform physicochemical methods. The top disorder predictor has F max = 0.483 on the full dataset and F max = 0.792 following filtering out of bona fide structured regions. Disordered binding regions remain hard to predict, with F max = 0.231. Interestingly, computing times among methods can vary by up to four orders of magnitude.
T2  - Nature Methods
T1  - Critical assessment of protein intrinsic disorder prediction
VL  - 18
IS  - 5
SP  - 472
EP  - 481
DO  - 10.1038/s41592-021-01117-3
ER  - 
@article{
author = "Necci, Marco and Piovesan, Damiano and Tosatto, Silvio C. E. and Davidović, Radoslav S. and Veljković, Nevena V.",
year = "2021",
abstract = "Intrinsically disordered proteins, defying the traditional protein structure–function paradigm, are a challenge to study experimentally. Because a large part of our knowledge rests on computational predictions, it is crucial that their accuracy is high. The Critical Assessment of protein Intrinsic Disorder prediction (CAID) experiment was established as a community-based blind test to determine the state of the art in prediction of intrinsically disordered regions and the subset of residues involved in binding. A total of 43 methods were evaluated on a dataset of 646 proteins from DisProt. The best methods use deep learning techniques and notably outperform physicochemical methods. The top disorder predictor has F max = 0.483 on the full dataset and F max = 0.792 following filtering out of bona fide structured regions. Disordered binding regions remain hard to predict, with F max = 0.231. Interestingly, computing times among methods can vary by up to four orders of magnitude.",
journal = "Nature Methods",
title = "Critical assessment of protein intrinsic disorder prediction",
volume = "18",
number = "5",
pages = "472-481",
doi = "10.1038/s41592-021-01117-3"
}
Necci, M., Piovesan, D., Tosatto, S. C. E., Davidović, R. S.,& Veljković, N. V.. (2021). Critical assessment of protein intrinsic disorder prediction. in Nature Methods, 18(5), 472-481.
https://doi.org/10.1038/s41592-021-01117-3
Necci M, Piovesan D, Tosatto SCE, Davidović RS, Veljković NV. Critical assessment of protein intrinsic disorder prediction. in Nature Methods. 2021;18(5):472-481.
doi:10.1038/s41592-021-01117-3 .
Necci, Marco, Piovesan, Damiano, Tosatto, Silvio C. E., Davidović, Radoslav S., Veljković, Nevena V., "Critical assessment of protein intrinsic disorder prediction" in Nature Methods, 18, no. 5 (2021):472-481,
https://doi.org/10.1038/s41592-021-01117-3 . .
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DisProt: intrinsic protein disorder annotation in 2020

Hatos, András; Hajdu-Soltész, Borbála; Monzon, Alexander M; Palopoli, Nicolas; Álvarez, Lucía; Aykac-Fas, Burcu; Bassot, Claudio; Benítez, Guillermo I; Bevilacqua, Martina; Chasapi, Anastasia; Chemes, Lucia; Davey, Norman E; Davidović, Radoslav S.; Dunker, A Keith; Elofsson, Arne; Gobeill, Julien; Foutel, Nicolás S González; Sudha, Govindarajan; Guharoy, Mainak; Horvath, Tamas; Iglesias, Valentin; Kajava, Andrey V.; Kovacs, Orsolya P; Lamb, John; Lambrughi, Matteo; Lazar, Tamas; Leclercq, Jeremy Y; Leonardi, Emanuela; Macedo-Ribeiro, Sandra; Macossay-Castillo, Mauricio; Maiani, Emiliano; Manso, José A; Marino-Buslje, Cristina; Martínez-Pérez, Elizabeth; Mészáros, Bálint; Mičetić, Ivan; Minervini, Giovanni; Murvai, Nikoletta; Necci, Marco; Ouzounis, Christos A; Pajkos, Mátyás; Paladin, Lisanna; Pancsa, Rita; Papaleo, Elena; Parisi, Gustavo; Pasche, Emilie; Barbosa Pereira, Pedro J; Promponas, Vasilis J; Pujols, Jordi; Quaglia, Federica; Ruch, Patrick; Salvatore, Marco; Schad, Eva; Szabo, Beata; Szaniszló, Tamás; Tamana, Stella; Tantos, Agnes; Veljković, Nevena V.; Ventura, Salvador; Vranken, Wim; Dosztányi, Zsuzsanna; Tompa, Peter; Tosatto, Silvio C E; Piovesan, Damiano

(2019)

TY  - JOUR
AU  - Hatos, András
AU  - Hajdu-Soltész, Borbála
AU  - Monzon, Alexander M
AU  - Palopoli, Nicolas
AU  - Álvarez, Lucía
AU  - Aykac-Fas, Burcu
AU  - Bassot, Claudio
AU  - Benítez, Guillermo I
AU  - Bevilacqua, Martina
AU  - Chasapi, Anastasia
AU  - Chemes, Lucia
AU  - Davey, Norman E
AU  - Davidović, Radoslav S.
AU  - Dunker, A Keith
AU  - Elofsson, Arne
AU  - Gobeill, Julien
AU  - Foutel, Nicolás S González
AU  - Sudha, Govindarajan
AU  - Guharoy, Mainak
AU  - Horvath, Tamas
AU  - Iglesias, Valentin
AU  - Kajava, Andrey V.
AU  - Kovacs, Orsolya P
AU  - Lamb, John
AU  - Lambrughi, Matteo
AU  - Lazar, Tamas
AU  - Leclercq, Jeremy Y
AU  - Leonardi, Emanuela
AU  - Macedo-Ribeiro, Sandra
AU  - Macossay-Castillo, Mauricio
AU  - Maiani, Emiliano
AU  - Manso, José A
AU  - Marino-Buslje, Cristina
AU  - Martínez-Pérez, Elizabeth
AU  - Mészáros, Bálint
AU  - Mičetić, Ivan
AU  - Minervini, Giovanni
AU  - Murvai, Nikoletta
AU  - Necci, Marco
AU  - Ouzounis, Christos A
AU  - Pajkos, Mátyás
AU  - Paladin, Lisanna
AU  - Pancsa, Rita
AU  - Papaleo, Elena
AU  - Parisi, Gustavo
AU  - Pasche, Emilie
AU  - Barbosa Pereira, Pedro J
AU  - Promponas, Vasilis J
AU  - Pujols, Jordi
AU  - Quaglia, Federica
AU  - Ruch, Patrick
AU  - Salvatore, Marco
AU  - Schad, Eva
AU  - Szabo, Beata
AU  - Szaniszló, Tamás
AU  - Tamana, Stella
AU  - Tantos, Agnes
AU  - Veljković, Nevena V.
AU  - Ventura, Salvador
AU  - Vranken, Wim
AU  - Dosztányi, Zsuzsanna
AU  - Tompa, Peter
AU  - Tosatto, Silvio C E
AU  - Piovesan, Damiano
PY  - 2019
UR  - https://vinar.vin.bg.ac.rs/handle/123456789/8799
AB  - The Database of Protein Disorder (DisProt, URL: https://disprot.org) provides manually curated annotations of intrinsically disordered proteins from the literature. Here we report recent developments with DisProt (version 8), including the doubling of protein entries, a new disorder ontology, improvements of the annotation format and a completely new website. The website includes a redesigned graphical interface, a better search engine, a clearer API for programmatic access and a new annotation interface that integrates text mining technologies. The new entry format provides a greater flexibility, simplifies maintenance and allows the capture of more information from the literature. The new disorder ontology has been formalized and made interoperable by adopting the OWL format, as well as its structure and term definitions have been improved. The new annotation interface has made the curation process faster and more effective. We recently showed that new DisProt annotations can be effectively used to train and validate disorder predictors. We believe the growth of DisProt will accelerate, contributing to the improvement of function and disorder predictors and therefore to illuminate the ‘dark’ proteome.
T2  - Nucleic Acids Research
T1  - DisProt: intrinsic protein disorder annotation in 2020
VL  - 48
IS  - D1
SP  - D269
EP  - D276
DO  - 10.1093/nar/gkz975
ER  - 
@article{
author = "Hatos, András and Hajdu-Soltész, Borbála and Monzon, Alexander M and Palopoli, Nicolas and Álvarez, Lucía and Aykac-Fas, Burcu and Bassot, Claudio and Benítez, Guillermo I and Bevilacqua, Martina and Chasapi, Anastasia and Chemes, Lucia and Davey, Norman E and Davidović, Radoslav S. and Dunker, A Keith and Elofsson, Arne and Gobeill, Julien and Foutel, Nicolás S González and Sudha, Govindarajan and Guharoy, Mainak and Horvath, Tamas and Iglesias, Valentin and Kajava, Andrey V. and Kovacs, Orsolya P and Lamb, John and Lambrughi, Matteo and Lazar, Tamas and Leclercq, Jeremy Y and Leonardi, Emanuela and Macedo-Ribeiro, Sandra and Macossay-Castillo, Mauricio and Maiani, Emiliano and Manso, José A and Marino-Buslje, Cristina and Martínez-Pérez, Elizabeth and Mészáros, Bálint and Mičetić, Ivan and Minervini, Giovanni and Murvai, Nikoletta and Necci, Marco and Ouzounis, Christos A and Pajkos, Mátyás and Paladin, Lisanna and Pancsa, Rita and Papaleo, Elena and Parisi, Gustavo and Pasche, Emilie and Barbosa Pereira, Pedro J and Promponas, Vasilis J and Pujols, Jordi and Quaglia, Federica and Ruch, Patrick and Salvatore, Marco and Schad, Eva and Szabo, Beata and Szaniszló, Tamás and Tamana, Stella and Tantos, Agnes and Veljković, Nevena V. and Ventura, Salvador and Vranken, Wim and Dosztányi, Zsuzsanna and Tompa, Peter and Tosatto, Silvio C E and Piovesan, Damiano",
year = "2019",
abstract = "The Database of Protein Disorder (DisProt, URL: https://disprot.org) provides manually curated annotations of intrinsically disordered proteins from the literature. Here we report recent developments with DisProt (version 8), including the doubling of protein entries, a new disorder ontology, improvements of the annotation format and a completely new website. The website includes a redesigned graphical interface, a better search engine, a clearer API for programmatic access and a new annotation interface that integrates text mining technologies. The new entry format provides a greater flexibility, simplifies maintenance and allows the capture of more information from the literature. The new disorder ontology has been formalized and made interoperable by adopting the OWL format, as well as its structure and term definitions have been improved. The new annotation interface has made the curation process faster and more effective. We recently showed that new DisProt annotations can be effectively used to train and validate disorder predictors. We believe the growth of DisProt will accelerate, contributing to the improvement of function and disorder predictors and therefore to illuminate the ‘dark’ proteome.",
journal = "Nucleic Acids Research",
title = "DisProt: intrinsic protein disorder annotation in 2020",
volume = "48",
number = "D1",
pages = "D269-D276",
doi = "10.1093/nar/gkz975"
}
Hatos, A., Hajdu-Soltész, B., Monzon, A. M., Palopoli, N., Álvarez, L., Aykac-Fas, B., Bassot, C., Benítez, G. I., Bevilacqua, M., Chasapi, A., Chemes, L., Davey, N. E., Davidović, R. S., Dunker, A. K., Elofsson, A., Gobeill, J., Foutel, N. S. G., Sudha, G., Guharoy, M., Horvath, T., Iglesias, V., Kajava, A. V., Kovacs, O. P., Lamb, J., Lambrughi, M., Lazar, T., Leclercq, J. Y., Leonardi, E., Macedo-Ribeiro, S., Macossay-Castillo, M., Maiani, E., Manso, J. A., Marino-Buslje, C., Martínez-Pérez, E., Mészáros, B., Mičetić, I., Minervini, G., Murvai, N., Necci, M., Ouzounis, C. A., Pajkos, M., Paladin, L., Pancsa, R., Papaleo, E., Parisi, G., Pasche, E., Barbosa Pereira, P. J., Promponas, V. J., Pujols, J., Quaglia, F., Ruch, P., Salvatore, M., Schad, E., Szabo, B., Szaniszló, T., Tamana, S., Tantos, A., Veljković, N. V., Ventura, S., Vranken, W., Dosztányi, Z., Tompa, P., Tosatto, S. C. E.,& Piovesan, D.. (2019). DisProt: intrinsic protein disorder annotation in 2020. in Nucleic Acids Research, 48(D1), D269-D276.
https://doi.org/10.1093/nar/gkz975
Hatos A, Hajdu-Soltész B, Monzon AM, Palopoli N, Álvarez L, Aykac-Fas B, Bassot C, Benítez GI, Bevilacqua M, Chasapi A, Chemes L, Davey NE, Davidović RS, Dunker AK, Elofsson A, Gobeill J, Foutel NSG, Sudha G, Guharoy M, Horvath T, Iglesias V, Kajava AV, Kovacs OP, Lamb J, Lambrughi M, Lazar T, Leclercq JY, Leonardi E, Macedo-Ribeiro S, Macossay-Castillo M, Maiani E, Manso JA, Marino-Buslje C, Martínez-Pérez E, Mészáros B, Mičetić I, Minervini G, Murvai N, Necci M, Ouzounis CA, Pajkos M, Paladin L, Pancsa R, Papaleo E, Parisi G, Pasche E, Barbosa Pereira PJ, Promponas VJ, Pujols J, Quaglia F, Ruch P, Salvatore M, Schad E, Szabo B, Szaniszló T, Tamana S, Tantos A, Veljković NV, Ventura S, Vranken W, Dosztányi Z, Tompa P, Tosatto SCE, Piovesan D. DisProt: intrinsic protein disorder annotation in 2020. in Nucleic Acids Research. 2019;48(D1):D269-D276.
doi:10.1093/nar/gkz975 .
Hatos, András, Hajdu-Soltész, Borbála, Monzon, Alexander M, Palopoli, Nicolas, Álvarez, Lucía, Aykac-Fas, Burcu, Bassot, Claudio, Benítez, Guillermo I, Bevilacqua, Martina, Chasapi, Anastasia, Chemes, Lucia, Davey, Norman E, Davidović, Radoslav S., Dunker, A Keith, Elofsson, Arne, Gobeill, Julien, Foutel, Nicolás S González, Sudha, Govindarajan, Guharoy, Mainak, Horvath, Tamas, Iglesias, Valentin, Kajava, Andrey V., Kovacs, Orsolya P, Lamb, John, Lambrughi, Matteo, Lazar, Tamas, Leclercq, Jeremy Y, Leonardi, Emanuela, Macedo-Ribeiro, Sandra, Macossay-Castillo, Mauricio, Maiani, Emiliano, Manso, José A, Marino-Buslje, Cristina, Martínez-Pérez, Elizabeth, Mészáros, Bálint, Mičetić, Ivan, Minervini, Giovanni, Murvai, Nikoletta, Necci, Marco, Ouzounis, Christos A, Pajkos, Mátyás, Paladin, Lisanna, Pancsa, Rita, Papaleo, Elena, Parisi, Gustavo, Pasche, Emilie, Barbosa Pereira, Pedro J, Promponas, Vasilis J, Pujols, Jordi, Quaglia, Federica, Ruch, Patrick, Salvatore, Marco, Schad, Eva, Szabo, Beata, Szaniszló, Tamás, Tamana, Stella, Tantos, Agnes, Veljković, Nevena V., Ventura, Salvador, Vranken, Wim, Dosztányi, Zsuzsanna, Tompa, Peter, Tosatto, Silvio C E, Piovesan, Damiano, "DisProt: intrinsic protein disorder annotation in 2020" in Nucleic Acids Research, 48, no. D1 (2019):D269-D276,
https://doi.org/10.1093/nar/gkz975 . .
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208
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174

The CAFA challenge reports improved protein function prediction and new functional annotations for hundreds of genes through experimental screens

Zhou, Naihui; Jiang, Yuxiang; Bergquist, Timothy R; Lee, Alexandra J; Kacsoh, Balint Z; Crocker, Alex W; Lewis, Kimberley A; Georghiou, George; Nguyen, Huy N; Hamid, Md Nafiz; Davis, Larry; Dogan, Tunca; Atalay, Volkan; Rifaioglu, Ahmet S; Dalkıran, Alperen; Cetin Atalay, Rengul; Zhang, Chengxin; Hurto, Rebecca L; Freddolino, Peter L; Zhang, Yang; Bhat, Prajwal; Supek, Fran; Fernández, José M; Gemović, Branislava S.; Perović, Vladimir R.; Davidović, Radoslav S.; Šumonja, Neven; Veljković, Nevena V.; Asgari, Ehsaneddin; Mofrad, Mohammad R.K.; Profiti, Giuseppe; Savojardo, Castrense; Martelli, Pier Luigi; Casadio, Rita; Boecker, Florian; Schoof, Heiko; Kahanda, Indika; Thurlby, Natalie; McHardy, Alice C; Renaux, Alexandre; Saidi, Rabie; Gough, Julian; Freitas, Alex A; Antczak, Magdalena; Fabris, Fabio; Wass, Mark N; Hou, Jie; Cheng, Jianlin; Wang, Zheng; Romero, Alfonso E; Paccanaro, Alberto; Yang, Haixuan; Goldberg, Tatyana; Zhao, Chenguang; Holm, Liisa; Törönen, Petri; Medlar, Alan J; Zosa, Elaine; Borukhov, Itamar; Novikov, Ilya; Wilkins, Angela; Lichtarge, Olivier; Chi, Po-Han; Tseng, Wei-Cheng; Linial, Michal; Rose, Peter W; Dessimoz, Christophe; Vidulin, Vedrana; Dzeroski, Saso; Sillitoe, Ian; Das, Sayoni; Lees, Jonathan Gill; Jones, David T; Wan, Cen; Cozzetto, Domenico; Fa, Rui; Torres, Mateo; Warwick Vesztrocy, Alex; Rodriguez, Jose Manuel; Tress, Michael L; Frasca, Marco; Notaro, Marco; Grossi, Giuliano; Petrini, Alessandro; Re, Matteo; Valentini, Giorgio; Mesiti, Marco; Roche, Daniel B; Reeb, Jonas; Ritchie, David W; Aridhi, Sabeur; Alborzi, Seyed Ziaeddin; Devignes, Marie-Dominique; Koo, Da Chen Emily; Bonneau, Richard; Gligorijević, Vladimir; Barot, Meet; Fang, Hai; Toppo, Stefano; Lavezzo, Enrico; Falda, Marco; Berselli, Michele; Tosatto, Silvio C.E.; Carraro, Marco; Piovesan, Damiano; Ur Rehman, Hafeez; Mao, Qizhong; Zhang, Shanshan; Vucetic, Slobodan; Black, Gage S; Jo, Dane; Suh, Erica; Dayton, Jonathan B; Larsen, Dallas J; Omdahl, Ashton R; McGuffin, Liam J; Brackenridge, Danielle A; Babbitt, Patricia C; Yunes, Jeffrey M; Fontana, Paolo; Zhang, Feng; Zhu, Shanfeng; You, Ronghui; Zhang, Zihan; Dai, Suyang; Yao, Shuwei; Tian, Weidong; Cao, Renzhi; Chandler, Caleb; Amezola, Miguel; Johnson, Devon; Chang, Jia-Ming; Liao, Wen-Hung; Liu, Yi-Wei; Pascarelli, Stefano; Frank, Yotam; Hoehndorf, Robert; Kulmanov, Maxat; Boudellioua, Imane; Politano, Gianfranco; Di Carlo, Stefano; Benso, Alfredo; Hakala, Kai; Ginter, Filip; Mehryary, Farrokh; Kaewphan, Suwisa; Björne, Jari; Moen, Hans; Tolvanen, Martti E.E.; Salakoski, Tapio; Kihara, Daisuke; Jain, Aashish; Šmuc, Tomislav; Altenhoff, Adrian; Ben-Hur, Asa; Rost, Burkhard; Brenner, Steven E; Orengo, Christine A; Jeffery, Constance J; Bosco, Giovanni; Hogan, Deborah A; Martin, Maria J; O’Donovan, Claire; Mooney, Sean D; Greene, Casey S; Radivojac, Predrag; Friedberg, Iddo

(2019)

TY  - JOUR
AU  - Zhou, Naihui
AU  - Jiang, Yuxiang
AU  - Bergquist, Timothy R
AU  - Lee, Alexandra J
AU  - Kacsoh, Balint Z
AU  - Crocker, Alex W
AU  - Lewis, Kimberley A
AU  - Georghiou, George
AU  - Nguyen, Huy N
AU  - Hamid, Md Nafiz
AU  - Davis, Larry
AU  - Dogan, Tunca
AU  - Atalay, Volkan
AU  - Rifaioglu, Ahmet S
AU  - Dalkıran, Alperen
AU  - Cetin Atalay, Rengul
AU  - Zhang, Chengxin
AU  - Hurto, Rebecca L
AU  - Freddolino, Peter L
AU  - Zhang, Yang
AU  - Bhat, Prajwal
AU  - Supek, Fran
AU  - Fernández, José M
AU  - Gemović, Branislava S.
AU  - Perović, Vladimir R.
AU  - Davidović, Radoslav S.
AU  - Šumonja, Neven
AU  - Veljković, Nevena V.
AU  - Asgari, Ehsaneddin
AU  - Mofrad, Mohammad R.K.
AU  - Profiti, Giuseppe
AU  - Savojardo, Castrense
AU  - Martelli, Pier Luigi
AU  - Casadio, Rita
AU  - Boecker, Florian
AU  - Schoof, Heiko
AU  - Kahanda, Indika
AU  - Thurlby, Natalie
AU  - McHardy, Alice C
AU  - Renaux, Alexandre
AU  - Saidi, Rabie
AU  - Gough, Julian
AU  - Freitas, Alex A
AU  - Antczak, Magdalena
AU  - Fabris, Fabio
AU  - Wass, Mark N
AU  - Hou, Jie
AU  - Cheng, Jianlin
AU  - Wang, Zheng
AU  - Romero, Alfonso E
AU  - Paccanaro, Alberto
AU  - Yang, Haixuan
AU  - Goldberg, Tatyana
AU  - Zhao, Chenguang
AU  - Holm, Liisa
AU  - Törönen, Petri
AU  - Medlar, Alan J
AU  - Zosa, Elaine
AU  - Borukhov, Itamar
AU  - Novikov, Ilya
AU  - Wilkins, Angela
AU  - Lichtarge, Olivier
AU  - Chi, Po-Han
AU  - Tseng, Wei-Cheng
AU  - Linial, Michal
AU  - Rose, Peter W
AU  - Dessimoz, Christophe
AU  - Vidulin, Vedrana
AU  - Dzeroski, Saso
AU  - Sillitoe, Ian
AU  - Das, Sayoni
AU  - Lees, Jonathan Gill
AU  - Jones, David T
AU  - Wan, Cen
AU  - Cozzetto, Domenico
AU  - Fa, Rui
AU  - Torres, Mateo
AU  - Warwick Vesztrocy, Alex
AU  - Rodriguez, Jose Manuel
AU  - Tress, Michael L
AU  - Frasca, Marco
AU  - Notaro, Marco
AU  - Grossi, Giuliano
AU  - Petrini, Alessandro
AU  - Re, Matteo
AU  - Valentini, Giorgio
AU  - Mesiti, Marco
AU  - Roche, Daniel B
AU  - Reeb, Jonas
AU  - Ritchie, David W
AU  - Aridhi, Sabeur
AU  - Alborzi, Seyed Ziaeddin
AU  - Devignes, Marie-Dominique
AU  - Koo, Da Chen Emily
AU  - Bonneau, Richard
AU  - Gligorijević, Vladimir
AU  - Barot, Meet
AU  - Fang, Hai
AU  - Toppo, Stefano
AU  - Lavezzo, Enrico
AU  - Falda, Marco
AU  - Berselli, Michele
AU  - Tosatto, Silvio C.E.
AU  - Carraro, Marco
AU  - Piovesan, Damiano
AU  - Ur Rehman, Hafeez
AU  - Mao, Qizhong
AU  - Zhang, Shanshan
AU  - Vucetic, Slobodan
AU  - Black, Gage S
AU  - Jo, Dane
AU  - Suh, Erica
AU  - Dayton, Jonathan B
AU  - Larsen, Dallas J
AU  - Omdahl, Ashton R
AU  - McGuffin, Liam J
AU  - Brackenridge, Danielle A
AU  - Babbitt, Patricia C
AU  - Yunes, Jeffrey M
AU  - Fontana, Paolo
AU  - Zhang, Feng
AU  - Zhu, Shanfeng
AU  - You, Ronghui
AU  - Zhang, Zihan
AU  - Dai, Suyang
AU  - Yao, Shuwei
AU  - Tian, Weidong
AU  - Cao, Renzhi
AU  - Chandler, Caleb
AU  - Amezola, Miguel
AU  - Johnson, Devon
AU  - Chang, Jia-Ming
AU  - Liao, Wen-Hung
AU  - Liu, Yi-Wei
AU  - Pascarelli, Stefano
AU  - Frank, Yotam
AU  - Hoehndorf, Robert
AU  - Kulmanov, Maxat
AU  - Boudellioua, Imane
AU  - Politano, Gianfranco
AU  - Di Carlo, Stefano
AU  - Benso, Alfredo
AU  - Hakala, Kai
AU  - Ginter, Filip
AU  - Mehryary, Farrokh
AU  - Kaewphan, Suwisa
AU  - Björne, Jari
AU  - Moen, Hans
AU  - Tolvanen, Martti E.E.
AU  - Salakoski, Tapio
AU  - Kihara, Daisuke
AU  - Jain, Aashish
AU  - Šmuc, Tomislav
AU  - Altenhoff, Adrian
AU  - Ben-Hur, Asa
AU  - Rost, Burkhard
AU  - Brenner, Steven E
AU  - Orengo, Christine A
AU  - Jeffery, Constance J
AU  - Bosco, Giovanni
AU  - Hogan, Deborah A
AU  - Martin, Maria J
AU  - O’Donovan, Claire
AU  - Mooney, Sean D
AU  - Greene, Casey S
AU  - Radivojac, Predrag
AU  - Friedberg, Iddo
PY  - 2019
UR  - https://vinar.vin.bg.ac.rs/handle/123456789/8655
AB  - Background: The Critical Assessment of Functional Annotation (CAFA) is an ongoing, global, community-driven effort to evaluate and improve the computational annotation of protein function. Results: Here, we report on the results of the third CAFA challenge, CAFA3, that featured an expanded analysis over the previous CAFA rounds, both in terms of volume of data analyzed and the types of analysis performed. In a novel and major new development, computational predictions and assessment goals drove some of the experimental assays, resulting in new functional annotations for more than 1000 genes. Specifically, we performed experimental whole-genome mutation screening in Candida albicans and Pseudomonas aureginosa genomes, which provided us with genome-wide experimental data for genes associated with biofilm formation and motility. We further performed targeted assays on selected genes in Drosophila melanogaster, which we suspected of being involved in long-Term memory. Conclusion: We conclude that while predictions of the molecular function and biological process annotations have slightly improved over time, those of the cellular component have not. Term-centric prediction of experimental annotations remains equally challenging; although the performance of the top methods is significantly better than the expectations set by baseline methods in C. albicans and D. melanogaster, it leaves considerable room and need for improvement. Finally, we report that the CAFA community now involves a broad range of participants with expertise in bioinformatics, biological experimentation, biocuration, and bio-ontologies, working together to improve functional annotation, computational function prediction, and our ability to manage big data in the era of large experimental screens. © 2019 The Author(s).
T2  - Genome Biology
T1  - The CAFA challenge reports improved protein function prediction and new functional annotations for hundreds of genes through experimental screens
VL  - 20
IS  - 1
SP  - 244
DO  - 10.1186/s13059-019-1835-8
ER  - 
@article{
author = "Zhou, Naihui and Jiang, Yuxiang and Bergquist, Timothy R and Lee, Alexandra J and Kacsoh, Balint Z and Crocker, Alex W and Lewis, Kimberley A and Georghiou, George and Nguyen, Huy N and Hamid, Md Nafiz and Davis, Larry and Dogan, Tunca and Atalay, Volkan and Rifaioglu, Ahmet S and Dalkıran, Alperen and Cetin Atalay, Rengul and Zhang, Chengxin and Hurto, Rebecca L and Freddolino, Peter L and Zhang, Yang and Bhat, Prajwal and Supek, Fran and Fernández, José M and Gemović, Branislava S. and Perović, Vladimir R. and Davidović, Radoslav S. and Šumonja, Neven and Veljković, Nevena V. and Asgari, Ehsaneddin and Mofrad, Mohammad R.K. and Profiti, Giuseppe and Savojardo, Castrense and Martelli, Pier Luigi and Casadio, Rita and Boecker, Florian and Schoof, Heiko and Kahanda, Indika and Thurlby, Natalie and McHardy, Alice C and Renaux, Alexandre and Saidi, Rabie and Gough, Julian and Freitas, Alex A and Antczak, Magdalena and Fabris, Fabio and Wass, Mark N and Hou, Jie and Cheng, Jianlin and Wang, Zheng and Romero, Alfonso E and Paccanaro, Alberto and Yang, Haixuan and Goldberg, Tatyana and Zhao, Chenguang and Holm, Liisa and Törönen, Petri and Medlar, Alan J and Zosa, Elaine and Borukhov, Itamar and Novikov, Ilya and Wilkins, Angela and Lichtarge, Olivier and Chi, Po-Han and Tseng, Wei-Cheng and Linial, Michal and Rose, Peter W and Dessimoz, Christophe and Vidulin, Vedrana and Dzeroski, Saso and Sillitoe, Ian and Das, Sayoni and Lees, Jonathan Gill and Jones, David T and Wan, Cen and Cozzetto, Domenico and Fa, Rui and Torres, Mateo and Warwick Vesztrocy, Alex and Rodriguez, Jose Manuel and Tress, Michael L and Frasca, Marco and Notaro, Marco and Grossi, Giuliano and Petrini, Alessandro and Re, Matteo and Valentini, Giorgio and Mesiti, Marco and Roche, Daniel B and Reeb, Jonas and Ritchie, David W and Aridhi, Sabeur and Alborzi, Seyed Ziaeddin and Devignes, Marie-Dominique and Koo, Da Chen Emily and Bonneau, Richard and Gligorijević, Vladimir and Barot, Meet and Fang, Hai and Toppo, Stefano and Lavezzo, Enrico and Falda, Marco and Berselli, Michele and Tosatto, Silvio C.E. and Carraro, Marco and Piovesan, Damiano and Ur Rehman, Hafeez and Mao, Qizhong and Zhang, Shanshan and Vucetic, Slobodan and Black, Gage S and Jo, Dane and Suh, Erica and Dayton, Jonathan B and Larsen, Dallas J and Omdahl, Ashton R and McGuffin, Liam J and Brackenridge, Danielle A and Babbitt, Patricia C and Yunes, Jeffrey M and Fontana, Paolo and Zhang, Feng and Zhu, Shanfeng and You, Ronghui and Zhang, Zihan and Dai, Suyang and Yao, Shuwei and Tian, Weidong and Cao, Renzhi and Chandler, Caleb and Amezola, Miguel and Johnson, Devon and Chang, Jia-Ming and Liao, Wen-Hung and Liu, Yi-Wei and Pascarelli, Stefano and Frank, Yotam and Hoehndorf, Robert and Kulmanov, Maxat and Boudellioua, Imane and Politano, Gianfranco and Di Carlo, Stefano and Benso, Alfredo and Hakala, Kai and Ginter, Filip and Mehryary, Farrokh and Kaewphan, Suwisa and Björne, Jari and Moen, Hans and Tolvanen, Martti E.E. and Salakoski, Tapio and Kihara, Daisuke and Jain, Aashish and Šmuc, Tomislav and Altenhoff, Adrian and Ben-Hur, Asa and Rost, Burkhard and Brenner, Steven E and Orengo, Christine A and Jeffery, Constance J and Bosco, Giovanni and Hogan, Deborah A and Martin, Maria J and O’Donovan, Claire and Mooney, Sean D and Greene, Casey S and Radivojac, Predrag and Friedberg, Iddo",
year = "2019",
abstract = "Background: The Critical Assessment of Functional Annotation (CAFA) is an ongoing, global, community-driven effort to evaluate and improve the computational annotation of protein function. Results: Here, we report on the results of the third CAFA challenge, CAFA3, that featured an expanded analysis over the previous CAFA rounds, both in terms of volume of data analyzed and the types of analysis performed. In a novel and major new development, computational predictions and assessment goals drove some of the experimental assays, resulting in new functional annotations for more than 1000 genes. Specifically, we performed experimental whole-genome mutation screening in Candida albicans and Pseudomonas aureginosa genomes, which provided us with genome-wide experimental data for genes associated with biofilm formation and motility. We further performed targeted assays on selected genes in Drosophila melanogaster, which we suspected of being involved in long-Term memory. Conclusion: We conclude that while predictions of the molecular function and biological process annotations have slightly improved over time, those of the cellular component have not. Term-centric prediction of experimental annotations remains equally challenging; although the performance of the top methods is significantly better than the expectations set by baseline methods in C. albicans and D. melanogaster, it leaves considerable room and need for improvement. Finally, we report that the CAFA community now involves a broad range of participants with expertise in bioinformatics, biological experimentation, biocuration, and bio-ontologies, working together to improve functional annotation, computational function prediction, and our ability to manage big data in the era of large experimental screens. © 2019 The Author(s).",
journal = "Genome Biology",
title = "The CAFA challenge reports improved protein function prediction and new functional annotations for hundreds of genes through experimental screens",
volume = "20",
number = "1",
pages = "244",
doi = "10.1186/s13059-019-1835-8"
}
Zhou, N., Jiang, Y., Bergquist, T. R., Lee, A. J., Kacsoh, B. Z., Crocker, A. W., Lewis, K. A., Georghiou, G., Nguyen, H. N., Hamid, M. N., Davis, L., Dogan, T., Atalay, V., Rifaioglu, A. S., Dalkıran, A., Cetin Atalay, R., Zhang, C., Hurto, R. L., Freddolino, P. L., Zhang, Y., Bhat, P., Supek, F., Fernández, J. M., Gemović, B. S., Perović, V. R., Davidović, R. S., Šumonja, N., Veljković, N. V., Asgari, E., Mofrad, M. R.K., Profiti, G., Savojardo, C., Martelli, P. L., Casadio, R., Boecker, F., Schoof, H., Kahanda, I., Thurlby, N., McHardy, A. C., Renaux, A., Saidi, R., Gough, J., Freitas, A. A., Antczak, M., Fabris, F., Wass, M. N., Hou, J., Cheng, J., Wang, Z., Romero, A. E., Paccanaro, A., Yang, H., Goldberg, T., Zhao, C., Holm, L., Törönen, P., Medlar, A. J., Zosa, E., Borukhov, I., Novikov, I., Wilkins, A., Lichtarge, O., Chi, P., Tseng, W., Linial, M., Rose, P. W., Dessimoz, C., Vidulin, V., Dzeroski, S., Sillitoe, I., Das, S., Lees, J. G., Jones, D. T., Wan, C., Cozzetto, D., Fa, R., Torres, M., Warwick Vesztrocy, A., Rodriguez, J. M., Tress, M. L., Frasca, M., Notaro, M., Grossi, G., Petrini, A., Re, M., Valentini, G., Mesiti, M., Roche, D. B., Reeb, J., Ritchie, D. W., Aridhi, S., Alborzi, S. Z., Devignes, M., Koo, D. C. E., Bonneau, R., Gligorijević, V., Barot, M., Fang, H., Toppo, S., Lavezzo, E., Falda, M., Berselli, M., Tosatto, S. C.E., Carraro, M., Piovesan, D., Ur Rehman, H., Mao, Q., Zhang, S., Vucetic, S., Black, G. S., Jo, D., Suh, E., Dayton, J. B., Larsen, D. J., Omdahl, A. R., McGuffin, L. J., Brackenridge, D. A., Babbitt, P. C., Yunes, J. M., Fontana, P., Zhang, F., Zhu, S., You, R., Zhang, Z., Dai, S., Yao, S., Tian, W., Cao, R., Chandler, C., Amezola, M., Johnson, D., Chang, J., Liao, W., Liu, Y., Pascarelli, S., Frank, Y., Hoehndorf, R., Kulmanov, M., Boudellioua, I., Politano, G., Di Carlo, S., Benso, A., Hakala, K., Ginter, F., Mehryary, F., Kaewphan, S., Björne, J., Moen, H., Tolvanen, M. E.E., Salakoski, T., Kihara, D., Jain, A., Šmuc, T., Altenhoff, A., Ben-Hur, A., Rost, B., Brenner, S. E., Orengo, C. A., Jeffery, C. J., Bosco, G., Hogan, D. A., Martin, M. J., O’Donovan, C., Mooney, S. D., Greene, C. S., Radivojac, P.,& Friedberg, I.. (2019). The CAFA challenge reports improved protein function prediction and new functional annotations for hundreds of genes through experimental screens. in Genome Biology, 20(1), 244.
https://doi.org/10.1186/s13059-019-1835-8
Zhou N, Jiang Y, Bergquist TR, Lee AJ, Kacsoh BZ, Crocker AW, Lewis KA, Georghiou G, Nguyen HN, Hamid MN, Davis L, Dogan T, Atalay V, Rifaioglu AS, Dalkıran A, Cetin Atalay R, Zhang C, Hurto RL, Freddolino PL, Zhang Y, Bhat P, Supek F, Fernández JM, Gemović BS, Perović VR, Davidović RS, Šumonja N, Veljković NV, Asgari E, Mofrad MR, Profiti G, Savojardo C, Martelli PL, Casadio R, Boecker F, Schoof H, Kahanda I, Thurlby N, McHardy AC, Renaux A, Saidi R, Gough J, Freitas AA, Antczak M, Fabris F, Wass MN, Hou J, Cheng J, Wang Z, Romero AE, Paccanaro A, Yang H, Goldberg T, Zhao C, Holm L, Törönen P, Medlar AJ, Zosa E, Borukhov I, Novikov I, Wilkins A, Lichtarge O, Chi P, Tseng W, Linial M, Rose PW, Dessimoz C, Vidulin V, Dzeroski S, Sillitoe I, Das S, Lees JG, Jones DT, Wan C, Cozzetto D, Fa R, Torres M, Warwick Vesztrocy A, Rodriguez JM, Tress ML, Frasca M, Notaro M, Grossi G, Petrini A, Re M, Valentini G, Mesiti M, Roche DB, Reeb J, Ritchie DW, Aridhi S, Alborzi SZ, Devignes M, Koo DCE, Bonneau R, Gligorijević V, Barot M, Fang H, Toppo S, Lavezzo E, Falda M, Berselli M, Tosatto SC, Carraro M, Piovesan D, Ur Rehman H, Mao Q, Zhang S, Vucetic S, Black GS, Jo D, Suh E, Dayton JB, Larsen DJ, Omdahl AR, McGuffin LJ, Brackenridge DA, Babbitt PC, Yunes JM, Fontana P, Zhang F, Zhu S, You R, Zhang Z, Dai S, Yao S, Tian W, Cao R, Chandler C, Amezola M, Johnson D, Chang J, Liao W, Liu Y, Pascarelli S, Frank Y, Hoehndorf R, Kulmanov M, Boudellioua I, Politano G, Di Carlo S, Benso A, Hakala K, Ginter F, Mehryary F, Kaewphan S, Björne J, Moen H, Tolvanen ME, Salakoski T, Kihara D, Jain A, Šmuc T, Altenhoff A, Ben-Hur A, Rost B, Brenner SE, Orengo CA, Jeffery CJ, Bosco G, Hogan DA, Martin MJ, O’Donovan C, Mooney SD, Greene CS, Radivojac P, Friedberg I. The CAFA challenge reports improved protein function prediction and new functional annotations for hundreds of genes through experimental screens. in Genome Biology. 2019;20(1):244.
doi:10.1186/s13059-019-1835-8 .
Zhou, Naihui, Jiang, Yuxiang, Bergquist, Timothy R, Lee, Alexandra J, Kacsoh, Balint Z, Crocker, Alex W, Lewis, Kimberley A, Georghiou, George, Nguyen, Huy N, Hamid, Md Nafiz, Davis, Larry, Dogan, Tunca, Atalay, Volkan, Rifaioglu, Ahmet S, Dalkıran, Alperen, Cetin Atalay, Rengul, Zhang, Chengxin, Hurto, Rebecca L, Freddolino, Peter L, Zhang, Yang, Bhat, Prajwal, Supek, Fran, Fernández, José M, Gemović, Branislava S., Perović, Vladimir R., Davidović, Radoslav S., Šumonja, Neven, Veljković, Nevena V., Asgari, Ehsaneddin, Mofrad, Mohammad R.K., Profiti, Giuseppe, Savojardo, Castrense, Martelli, Pier Luigi, Casadio, Rita, Boecker, Florian, Schoof, Heiko, Kahanda, Indika, Thurlby, Natalie, McHardy, Alice C, Renaux, Alexandre, Saidi, Rabie, Gough, Julian, Freitas, Alex A, Antczak, Magdalena, Fabris, Fabio, Wass, Mark N, Hou, Jie, Cheng, Jianlin, Wang, Zheng, Romero, Alfonso E, Paccanaro, Alberto, Yang, Haixuan, Goldberg, Tatyana, Zhao, Chenguang, Holm, Liisa, Törönen, Petri, Medlar, Alan J, Zosa, Elaine, Borukhov, Itamar, Novikov, Ilya, Wilkins, Angela, Lichtarge, Olivier, Chi, Po-Han, Tseng, Wei-Cheng, Linial, Michal, Rose, Peter W, Dessimoz, Christophe, Vidulin, Vedrana, Dzeroski, Saso, Sillitoe, Ian, Das, Sayoni, Lees, Jonathan Gill, Jones, David T, Wan, Cen, Cozzetto, Domenico, Fa, Rui, Torres, Mateo, Warwick Vesztrocy, Alex, Rodriguez, Jose Manuel, Tress, Michael L, Frasca, Marco, Notaro, Marco, Grossi, Giuliano, Petrini, Alessandro, Re, Matteo, Valentini, Giorgio, Mesiti, Marco, Roche, Daniel B, Reeb, Jonas, Ritchie, David W, Aridhi, Sabeur, Alborzi, Seyed Ziaeddin, Devignes, Marie-Dominique, Koo, Da Chen Emily, Bonneau, Richard, Gligorijević, Vladimir, Barot, Meet, Fang, Hai, Toppo, Stefano, Lavezzo, Enrico, Falda, Marco, Berselli, Michele, Tosatto, Silvio C.E., Carraro, Marco, Piovesan, Damiano, Ur Rehman, Hafeez, Mao, Qizhong, Zhang, Shanshan, Vucetic, Slobodan, Black, Gage S, Jo, Dane, Suh, Erica, Dayton, Jonathan B, Larsen, Dallas J, Omdahl, Ashton R, McGuffin, Liam J, Brackenridge, Danielle A, Babbitt, Patricia C, Yunes, Jeffrey M, Fontana, Paolo, Zhang, Feng, Zhu, Shanfeng, You, Ronghui, Zhang, Zihan, Dai, Suyang, Yao, Shuwei, Tian, Weidong, Cao, Renzhi, Chandler, Caleb, Amezola, Miguel, Johnson, Devon, Chang, Jia-Ming, Liao, Wen-Hung, Liu, Yi-Wei, Pascarelli, Stefano, Frank, Yotam, Hoehndorf, Robert, Kulmanov, Maxat, Boudellioua, Imane, Politano, Gianfranco, Di Carlo, Stefano, Benso, Alfredo, Hakala, Kai, Ginter, Filip, Mehryary, Farrokh, Kaewphan, Suwisa, Björne, Jari, Moen, Hans, Tolvanen, Martti E.E., Salakoski, Tapio, Kihara, Daisuke, Jain, Aashish, Šmuc, Tomislav, Altenhoff, Adrian, Ben-Hur, Asa, Rost, Burkhard, Brenner, Steven E, Orengo, Christine A, Jeffery, Constance J, Bosco, Giovanni, Hogan, Deborah A, Martin, Maria J, O’Donovan, Claire, Mooney, Sean D, Greene, Casey S, Radivojac, Predrag, Friedberg, Iddo, "The CAFA challenge reports improved protein function prediction and new functional annotations for hundreds of genes through experimental screens" in Genome Biology, 20, no. 1 (2019):244,
https://doi.org/10.1186/s13059-019-1835-8 . .
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202

Erratum: DisProt 7.0: a major update of the database of disordered proteins

Piovesan, Damiano; Tabaro, Francesco; Micetic, Ivan; Necci, Marco; Quaglia, Federica; Oldfield, Christopher J.; Aspromonte, Maria Cristina; Davey, Norman E.; Davidović, Radoslav S.; Dosztanyi, Zsuzsanna; Elofsson, Arne; Gasparini, Alessandra; Hatos, Andras; Kajava, Andrey V.; Kalmar, Lajos; Leonardi, Emanuela; Lazar, Tamas; Macedo-Ribeiro, Sandra; Macossay-Castillo, Mauricio; Meszaros, Attila; Minervini, Giovanni; Murvai, Nikoletta; Pujols, Jordi; Roche, Daniel B.; Salladini, Edoardo; Schad, Eva; Schramm, Antoine; Szabo, Beata; Tantos, Agnes; Tonello, Fiorella; Tsirigos, Konstantinos D.; Veljković, Nevena V.; Ventura, Salvador; Vranken, Wim; Warholm, Per; Uversky, Vladimir N.; Dunker, A. Keith; Longhi, Sonia; Tompa, Peter; Tosatto, Silvio C. E.

(2017)

TY  - JOUR
AU  - Piovesan, Damiano
AU  - Tabaro, Francesco
AU  - Micetic, Ivan
AU  - Necci, Marco
AU  - Quaglia, Federica
AU  - Oldfield, Christopher J.
AU  - Aspromonte, Maria Cristina
AU  - Davey, Norman E.
AU  - Davidović, Radoslav S.
AU  - Dosztanyi, Zsuzsanna
AU  - Elofsson, Arne
AU  - Gasparini, Alessandra
AU  - Hatos, Andras
AU  - Kajava, Andrey V.
AU  - Kalmar, Lajos
AU  - Leonardi, Emanuela
AU  - Lazar, Tamas
AU  - Macedo-Ribeiro, Sandra
AU  - Macossay-Castillo, Mauricio
AU  - Meszaros, Attila
AU  - Minervini, Giovanni
AU  - Murvai, Nikoletta
AU  - Pujols, Jordi
AU  - Roche, Daniel B.
AU  - Salladini, Edoardo
AU  - Schad, Eva
AU  - Schramm, Antoine
AU  - Szabo, Beata
AU  - Tantos, Agnes
AU  - Tonello, Fiorella
AU  - Tsirigos, Konstantinos D.
AU  - Veljković, Nevena V.
AU  - Ventura, Salvador
AU  - Vranken, Wim
AU  - Warholm, Per
AU  - Uversky, Vladimir N.
AU  - Dunker, A. Keith
AU  - Longhi, Sonia
AU  - Tompa, Peter
AU  - Tosatto, Silvio C. E.
PY  - 2017
UR  - https://vinar.vin.bg.ac.rs/handle/123456789/1465
T2  - Nucleic Acids Research
T1  - Erratum: DisProt 7.0: a major update of the database of disordered proteins
VL  - 45
IS  - D1
SP  - D1123
EP  - D1124
DO  - 10.1093/nar/gkw1279
ER  - 
@article{
author = "Piovesan, Damiano and Tabaro, Francesco and Micetic, Ivan and Necci, Marco and Quaglia, Federica and Oldfield, Christopher J. and Aspromonte, Maria Cristina and Davey, Norman E. and Davidović, Radoslav S. and Dosztanyi, Zsuzsanna and Elofsson, Arne and Gasparini, Alessandra and Hatos, Andras and Kajava, Andrey V. and Kalmar, Lajos and Leonardi, Emanuela and Lazar, Tamas and Macedo-Ribeiro, Sandra and Macossay-Castillo, Mauricio and Meszaros, Attila and Minervini, Giovanni and Murvai, Nikoletta and Pujols, Jordi and Roche, Daniel B. and Salladini, Edoardo and Schad, Eva and Schramm, Antoine and Szabo, Beata and Tantos, Agnes and Tonello, Fiorella and Tsirigos, Konstantinos D. and Veljković, Nevena V. and Ventura, Salvador and Vranken, Wim and Warholm, Per and Uversky, Vladimir N. and Dunker, A. Keith and Longhi, Sonia and Tompa, Peter and Tosatto, Silvio C. E.",
year = "2017",
journal = "Nucleic Acids Research",
title = "Erratum: DisProt 7.0: a major update of the database of disordered proteins",
volume = "45",
number = "D1",
pages = "D1123-D1124",
doi = "10.1093/nar/gkw1279"
}
Piovesan, D., Tabaro, F., Micetic, I., Necci, M., Quaglia, F., Oldfield, C. J., Aspromonte, M. C., Davey, N. E., Davidović, R. S., Dosztanyi, Z., Elofsson, A., Gasparini, A., Hatos, A., Kajava, A. V., Kalmar, L., Leonardi, E., Lazar, T., Macedo-Ribeiro, S., Macossay-Castillo, M., Meszaros, A., Minervini, G., Murvai, N., Pujols, J., Roche, D. B., Salladini, E., Schad, E., Schramm, A., Szabo, B., Tantos, A., Tonello, F., Tsirigos, K. D., Veljković, N. V., Ventura, S., Vranken, W., Warholm, P., Uversky, V. N., Dunker, A. K., Longhi, S., Tompa, P.,& Tosatto, S. C. E.. (2017). Erratum: DisProt 7.0: a major update of the database of disordered proteins. in Nucleic Acids Research, 45(D1), D1123-D1124.
https://doi.org/10.1093/nar/gkw1279
Piovesan D, Tabaro F, Micetic I, Necci M, Quaglia F, Oldfield CJ, Aspromonte MC, Davey NE, Davidović RS, Dosztanyi Z, Elofsson A, Gasparini A, Hatos A, Kajava AV, Kalmar L, Leonardi E, Lazar T, Macedo-Ribeiro S, Macossay-Castillo M, Meszaros A, Minervini G, Murvai N, Pujols J, Roche DB, Salladini E, Schad E, Schramm A, Szabo B, Tantos A, Tonello F, Tsirigos KD, Veljković NV, Ventura S, Vranken W, Warholm P, Uversky VN, Dunker AK, Longhi S, Tompa P, Tosatto SCE. Erratum: DisProt 7.0: a major update of the database of disordered proteins. in Nucleic Acids Research. 2017;45(D1):D1123-D1124.
doi:10.1093/nar/gkw1279 .
Piovesan, Damiano, Tabaro, Francesco, Micetic, Ivan, Necci, Marco, Quaglia, Federica, Oldfield, Christopher J., Aspromonte, Maria Cristina, Davey, Norman E., Davidović, Radoslav S., Dosztanyi, Zsuzsanna, Elofsson, Arne, Gasparini, Alessandra, Hatos, Andras, Kajava, Andrey V., Kalmar, Lajos, Leonardi, Emanuela, Lazar, Tamas, Macedo-Ribeiro, Sandra, Macossay-Castillo, Mauricio, Meszaros, Attila, Minervini, Giovanni, Murvai, Nikoletta, Pujols, Jordi, Roche, Daniel B., Salladini, Edoardo, Schad, Eva, Schramm, Antoine, Szabo, Beata, Tantos, Agnes, Tonello, Fiorella, Tsirigos, Konstantinos D., Veljković, Nevena V., Ventura, Salvador, Vranken, Wim, Warholm, Per, Uversky, Vladimir N., Dunker, A. Keith, Longhi, Sonia, Tompa, Peter, Tosatto, Silvio C. E., "Erratum: DisProt 7.0: a major update of the database of disordered proteins" in Nucleic Acids Research, 45, no. D1 (2017):D1123-D1124,
https://doi.org/10.1093/nar/gkw1279 . .
3
46
41
14

DisProt 7.0: a major update of the database of disordered proteins

Piovesan, Damiano; Tabaro, Francesco; Micetic, Ivan; Necci, Marco; Quaglia, Federica; Oldfield, Christopher J.; Aspromonte, Maria Cristina; Davey, Norman E.; Davidović, Radoslav S.; Dosztanyi, Zsuzsanna; Elofsson, Arne; Gasparini, Alessandra; Hatos, Andras; Kajava, Andrey V.; Kalmar, Lajos; Leonardi, Emanuela; Lazar, Tamas; Macedo-Ribeiro, Sandra; Macossay-Castillo, Mauricio; Meszaros, Attila; Minervini, Giovanni; Murvai, Nikoletta; Pujols, Jordi; Roche, Daniel B.; Salladini, Edoardo; Schad, Eva; Schramm, Antoine; Szabo, Beata; Tantos, Agnes; Tonello, Fiorella; Tsirigos, Konstantinos D.; Veljković, Nevena V.; Ventura, Salvador; Vranken, Wim; Warholm, Per; Uversky, Vladimir N.; Dunker, A. Keith; Longhi, Sonia; Tompa, Peter; Tosatto, Silvio C. E.

(2017)

TY  - JOUR
AU  - Piovesan, Damiano
AU  - Tabaro, Francesco
AU  - Micetic, Ivan
AU  - Necci, Marco
AU  - Quaglia, Federica
AU  - Oldfield, Christopher J.
AU  - Aspromonte, Maria Cristina
AU  - Davey, Norman E.
AU  - Davidović, Radoslav S.
AU  - Dosztanyi, Zsuzsanna
AU  - Elofsson, Arne
AU  - Gasparini, Alessandra
AU  - Hatos, Andras
AU  - Kajava, Andrey V.
AU  - Kalmar, Lajos
AU  - Leonardi, Emanuela
AU  - Lazar, Tamas
AU  - Macedo-Ribeiro, Sandra
AU  - Macossay-Castillo, Mauricio
AU  - Meszaros, Attila
AU  - Minervini, Giovanni
AU  - Murvai, Nikoletta
AU  - Pujols, Jordi
AU  - Roche, Daniel B.
AU  - Salladini, Edoardo
AU  - Schad, Eva
AU  - Schramm, Antoine
AU  - Szabo, Beata
AU  - Tantos, Agnes
AU  - Tonello, Fiorella
AU  - Tsirigos, Konstantinos D.
AU  - Veljković, Nevena V.
AU  - Ventura, Salvador
AU  - Vranken, Wim
AU  - Warholm, Per
AU  - Uversky, Vladimir N.
AU  - Dunker, A. Keith
AU  - Longhi, Sonia
AU  - Tompa, Peter
AU  - Tosatto, Silvio C. E.
PY  - 2017
UR  - https://vinar.vin.bg.ac.rs/handle/123456789/1464
AB  - The Database of Protein Disorder (DisProt, URL: www.disprot.org) has been significantly updated and upgraded since its last major renewal in 2007. The current release holds information on more than 800 entries of IDPs/IDRs, i.e. intrinsically disordered proteins or regions that exist and function without a well-defined three-dimensional structure. We have re-curated previous entries to purge DisProt from conflicting cases, and also upgraded the functional classification scheme to reflect continuous advance in the field in the past 10 years or so. We define IDPs as proteins that are disordered along their entire sequence, i.e. entirely lack structural elements, and IDRs as regions that are at least five consecutive residues without well-defined structure. We base our assessment of disorder strictly on experimental evidence, such as X-ray crystallography and nuclear magnetic resonance ( primary techniques) and a broad range of other experimental approaches (secondary techniques). Confident and ambiguous annotations are highlighted separately. DisProt 7.0 presents classified knowledge regarding the experimental characterization and functional annotations of IDPs/IDRs, and is intended to provide an invaluable resource for the research community for a better understanding structural disorder and for developing better computational tools for studying disordered proteins.
T2  - Nucleic Acids Research
T1  - DisProt 7.0: a major update of the database of disordered proteins
VL  - 45
IS  - D1
SP  - D219
EP  - D227
DO  - 10.1093/nar/gkw1056
ER  - 
@article{
author = "Piovesan, Damiano and Tabaro, Francesco and Micetic, Ivan and Necci, Marco and Quaglia, Federica and Oldfield, Christopher J. and Aspromonte, Maria Cristina and Davey, Norman E. and Davidović, Radoslav S. and Dosztanyi, Zsuzsanna and Elofsson, Arne and Gasparini, Alessandra and Hatos, Andras and Kajava, Andrey V. and Kalmar, Lajos and Leonardi, Emanuela and Lazar, Tamas and Macedo-Ribeiro, Sandra and Macossay-Castillo, Mauricio and Meszaros, Attila and Minervini, Giovanni and Murvai, Nikoletta and Pujols, Jordi and Roche, Daniel B. and Salladini, Edoardo and Schad, Eva and Schramm, Antoine and Szabo, Beata and Tantos, Agnes and Tonello, Fiorella and Tsirigos, Konstantinos D. and Veljković, Nevena V. and Ventura, Salvador and Vranken, Wim and Warholm, Per and Uversky, Vladimir N. and Dunker, A. Keith and Longhi, Sonia and Tompa, Peter and Tosatto, Silvio C. E.",
year = "2017",
abstract = "The Database of Protein Disorder (DisProt, URL: www.disprot.org) has been significantly updated and upgraded since its last major renewal in 2007. The current release holds information on more than 800 entries of IDPs/IDRs, i.e. intrinsically disordered proteins or regions that exist and function without a well-defined three-dimensional structure. We have re-curated previous entries to purge DisProt from conflicting cases, and also upgraded the functional classification scheme to reflect continuous advance in the field in the past 10 years or so. We define IDPs as proteins that are disordered along their entire sequence, i.e. entirely lack structural elements, and IDRs as regions that are at least five consecutive residues without well-defined structure. We base our assessment of disorder strictly on experimental evidence, such as X-ray crystallography and nuclear magnetic resonance ( primary techniques) and a broad range of other experimental approaches (secondary techniques). Confident and ambiguous annotations are highlighted separately. DisProt 7.0 presents classified knowledge regarding the experimental characterization and functional annotations of IDPs/IDRs, and is intended to provide an invaluable resource for the research community for a better understanding structural disorder and for developing better computational tools for studying disordered proteins.",
journal = "Nucleic Acids Research",
title = "DisProt 7.0: a major update of the database of disordered proteins",
volume = "45",
number = "D1",
pages = "D219-D227",
doi = "10.1093/nar/gkw1056"
}
Piovesan, D., Tabaro, F., Micetic, I., Necci, M., Quaglia, F., Oldfield, C. J., Aspromonte, M. C., Davey, N. E., Davidović, R. S., Dosztanyi, Z., Elofsson, A., Gasparini, A., Hatos, A., Kajava, A. V., Kalmar, L., Leonardi, E., Lazar, T., Macedo-Ribeiro, S., Macossay-Castillo, M., Meszaros, A., Minervini, G., Murvai, N., Pujols, J., Roche, D. B., Salladini, E., Schad, E., Schramm, A., Szabo, B., Tantos, A., Tonello, F., Tsirigos, K. D., Veljković, N. V., Ventura, S., Vranken, W., Warholm, P., Uversky, V. N., Dunker, A. K., Longhi, S., Tompa, P.,& Tosatto, S. C. E.. (2017). DisProt 7.0: a major update of the database of disordered proteins. in Nucleic Acids Research, 45(D1), D219-D227.
https://doi.org/10.1093/nar/gkw1056
Piovesan D, Tabaro F, Micetic I, Necci M, Quaglia F, Oldfield CJ, Aspromonte MC, Davey NE, Davidović RS, Dosztanyi Z, Elofsson A, Gasparini A, Hatos A, Kajava AV, Kalmar L, Leonardi E, Lazar T, Macedo-Ribeiro S, Macossay-Castillo M, Meszaros A, Minervini G, Murvai N, Pujols J, Roche DB, Salladini E, Schad E, Schramm A, Szabo B, Tantos A, Tonello F, Tsirigos KD, Veljković NV, Ventura S, Vranken W, Warholm P, Uversky VN, Dunker AK, Longhi S, Tompa P, Tosatto SCE. DisProt 7.0: a major update of the database of disordered proteins. in Nucleic Acids Research. 2017;45(D1):D219-D227.
doi:10.1093/nar/gkw1056 .
Piovesan, Damiano, Tabaro, Francesco, Micetic, Ivan, Necci, Marco, Quaglia, Federica, Oldfield, Christopher J., Aspromonte, Maria Cristina, Davey, Norman E., Davidović, Radoslav S., Dosztanyi, Zsuzsanna, Elofsson, Arne, Gasparini, Alessandra, Hatos, Andras, Kajava, Andrey V., Kalmar, Lajos, Leonardi, Emanuela, Lazar, Tamas, Macedo-Ribeiro, Sandra, Macossay-Castillo, Mauricio, Meszaros, Attila, Minervini, Giovanni, Murvai, Nikoletta, Pujols, Jordi, Roche, Daniel B., Salladini, Edoardo, Schad, Eva, Schramm, Antoine, Szabo, Beata, Tantos, Agnes, Tonello, Fiorella, Tsirigos, Konstantinos D., Veljković, Nevena V., Ventura, Salvador, Vranken, Wim, Warholm, Per, Uversky, Vladimir N., Dunker, A. Keith, Longhi, Sonia, Tompa, Peter, Tosatto, Silvio C. E., "DisProt 7.0: a major update of the database of disordered proteins" in Nucleic Acids Research, 45, no. D1 (2017):D219-D227,
https://doi.org/10.1093/nar/gkw1056 . .
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