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Activity to Breast Cancer Cell Lines of Different Malignancy and Predicted Interaction with Protein Kinase C Isoforms of Royleanones

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2020
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Authors
Isca, Vera M. S.
Senćanski, Milan V.
Filipović, Nenad R.
Dos Santos, Daniel J. V. A.
Čipak Gašparović, Ana
Saraiva, Lucilia
Afonso, Carlos A M
Rijo, Patrícia
Garcia-Sosa, Alfonso T
Article (Published version)
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© 2020 by the authors
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Abstract
Plants have been used for centuries to treat several illnesses. The Plectranthus genus has a vast variety of species that has allowed the isolation of cytotoxic compounds with notable activities. The abietane diterpenes 6,7-dehydroroyleanone (DeRoy, 1), 7α-acetoxy-6β-hydroxyroyleanone (Roy, 2), and Parvifloron D (ParvD, 3) were obtained from Plectranthus spp. and showed promising biological activities, such as cytotoxicity. The inhibitory effects of the different natural abietanes (1-3) were compared in MFC7, SkBr3, and SUM159 cell lines, as well as SUM159 grown in cancer stem cell-inducing conditions. Based on the royleanones’ bioactivity, the derivatives RoyBz (4), RoyBzCl (5), RoyPr2 (6), and DihydroxyRoy (7), previously obtained from 2, were selected for further studies. Protein kinases C (PKCs) are involved in several carcinogenic processes. Thus, PKCs are potential targets for cancer therapy. To date, the portfolio of available PKC modulators remains very limited due to the diffi...culty of designing isozyme-selective PKC modulators. As such, molecular docking was used to evaluate royleanones 1-6 as predicted isozyme-selective PKC binders. Subtle changes in the binding site of each PKC isoform change the predicted interaction profiles of the ligands. Subtle changes in royleanone substitution patterns, such as a double substitution only with non-substituted phenyls, or hydroxybenzoate at position four that flips the binding mode of ParvD (3), can increase the predicted interactions in certain PKC subtypes.

Plants have been used for centuries to treat several illnesses. The Plectranthus genus has a vast variety of species that has allowed the isolation of cytotoxic compounds with notable activities. The abietane diterpenes 6,7-dehydroroyleanone (DeRoy, 1), 7α-acetoxy-6β-hydroxyroyleanone (Roy, 2), and Parvifloron D (ParvD, 3) were obtained from Plectranthus spp. and showed promising biological activities, such as cytotoxicity. The inhibitory effects of the different natural abietanes (1-3) were compared in MFC7, SkBr3, and SUM159 cell lines, as well as SUM159 grown in cancer stem cell-inducing conditions. Based on the royleanones’ bioactivity, the derivatives RoyBz (4), RoyBzCl (5), RoyPr2 (6), and DihydroxyRoy (7), previously obtained from 2, were selected for further studies. Protein kinases C (PKCs) are involved in several carcinogenic processes. Thus, PKCs are potential targets for cancer therapy. To date, the portfolio of available PKC modulators remains very limited due to the diffi...culty of designing isozyme-selective PKC modulators. As such, molecular docking was used to evaluate royleanones 1-6 as predicted isozyme-selective PKC binders. Subtle changes in the binding site of each PKC isoform change the predicted interaction profiles of the ligands. Subtle changes in royleanone substitution patterns, such as a double substitution only with non-substituted phenyls, or hydroxybenzoate at position four that flips the binding mode of ParvD (3), can increase the predicted interactions in certain PKC subtypes.

Keywords:
Plectranthus / royleanones / hemi-synthesis / PKC activity / isozyme-selectivity / molecular interactions
Source:
International Journal of Molecular Sciences, 2020, 21, 10, 3671-
Funding / projects:
  • Fundacao para a Ciencia e Tecnologia (FCT) [UIDP/04567/2020]
  • Fundacao para a Ciencia e Tecnologia (FCT) [UIDB/04567/2020]
  • Fundacao para a Ciencia e Tecnologia (FCT) [UID/QUI/50006/2020]
  • Fundacao para a Ciencia e Tecnologia (FCT) [CBIOS/PRUID/BI1/2017]
  • Fundacao para a Ciencia e Tecnologia (FCT) [SFRH/BD/137671/2018]
  • European Union (FEDER funds through Programa Operacional Factores de Competitividade-COMPETE) [POCI/01/0145/FEDER/007728]
  • National Funds (FCT/MEC) under the Partnership Agreement PT2020 [UID/MULTI/04378/2013]
  • National Funds (FCT/MEC) under the Partnership Agreement [(3599-PPCDT) PTDC/DTP-FTO/1981/2014-POCI-01-0145-FEDER-016581]
  • Haridus-ja Teadusministeerium [IUT34-14]
  • Application of the EIIP/ISM bioinformatics platform in discovery of novel therapeutic targets and potential therapeutic molecules (RS-173001)
  • COST Action [Stratagem "New diagnostic and therapeutic tools against multidrug resistant tumours"]

DOI: 10.3390/ijms21103671

ISSN: 1422-0067

PubMed: 32456148

WoS: 000539312100267

Scopus: 2-s2.0-85085539387
[ Google Scholar ]
5
4
URI
https://vinar.vin.bg.ac.rs/handle/123456789/9017
Collections
  • Radovi istraživača
  • 180 - Laboratorija za bioinformatiku i računarsku hemiju
Institution/Community
Vinča
TY  - JOUR
AU  - Isca, Vera M. S.
AU  - Senćanski, Milan V.
AU  - Filipović, Nenad R.
AU  - Dos Santos, Daniel J. V. A.
AU  - Čipak Gašparović, Ana
AU  - Saraiva, Lucilia
AU  - Afonso, Carlos A M
AU  - Rijo, Patrícia
AU  - Garcia-Sosa, Alfonso T
PY  - 2020
UR  - https://vinar.vin.bg.ac.rs/handle/123456789/9017
AB  - Plants have been used for centuries to treat several illnesses. The Plectranthus genus has a vast variety of species that has allowed the isolation of cytotoxic compounds with notable activities. The abietane diterpenes 6,7-dehydroroyleanone (DeRoy, 1), 7α-acetoxy-6β-hydroxyroyleanone (Roy, 2), and Parvifloron D (ParvD, 3) were obtained from Plectranthus spp. and showed promising biological activities, such as cytotoxicity. The inhibitory effects of the different natural abietanes (1-3) were compared in MFC7, SkBr3, and SUM159 cell lines, as well as SUM159 grown in cancer stem cell-inducing conditions. Based on the royleanones’ bioactivity, the derivatives RoyBz (4), RoyBzCl (5), RoyPr2 (6), and DihydroxyRoy (7), previously obtained from 2, were selected for further studies. Protein kinases C (PKCs) are involved in several carcinogenic processes. Thus, PKCs are potential targets for cancer therapy. To date, the portfolio of available PKC modulators remains very limited due to the difficulty of designing isozyme-selective PKC modulators. As such, molecular docking was used to evaluate royleanones 1-6 as predicted isozyme-selective PKC binders. Subtle changes in the binding site of each PKC isoform change the predicted interaction profiles of the ligands. Subtle changes in royleanone substitution patterns, such as a double substitution only with non-substituted phenyls, or hydroxybenzoate at position four that flips the binding mode of ParvD (3), can increase the predicted interactions in certain PKC subtypes.
AB  - Plants have been used for centuries to treat several illnesses. The Plectranthus genus has a vast variety of species that has allowed the isolation of cytotoxic compounds with notable activities. The abietane diterpenes 6,7-dehydroroyleanone (DeRoy, 1), 7α-acetoxy-6β-hydroxyroyleanone (Roy, 2), and Parvifloron D (ParvD, 3) were obtained from Plectranthus spp. and showed promising biological activities, such as cytotoxicity. The inhibitory effects of the different natural abietanes (1-3) were compared in MFC7, SkBr3, and SUM159 cell lines, as well as SUM159 grown in cancer stem cell-inducing conditions. Based on the royleanones’ bioactivity, the derivatives RoyBz (4), RoyBzCl (5), RoyPr2 (6), and DihydroxyRoy (7), previously obtained from 2, were selected for further studies. Protein kinases C (PKCs) are involved in several carcinogenic processes. Thus, PKCs are potential targets for cancer therapy. To date, the portfolio of available PKC modulators remains very limited due to the difficulty of designing isozyme-selective PKC modulators. As such, molecular docking was used to evaluate royleanones 1-6 as predicted isozyme-selective PKC binders. Subtle changes in the binding site of each PKC isoform change the predicted interaction profiles of the ligands. Subtle changes in royleanone substitution patterns, such as a double substitution only with non-substituted phenyls, or hydroxybenzoate at position four that flips the binding mode of ParvD (3), can increase the predicted interactions in certain PKC subtypes.
T2  - International Journal of Molecular Sciences
T1  - Activity to Breast Cancer Cell Lines of Different Malignancy and Predicted Interaction with Protein Kinase C Isoforms of Royleanones
VL  - 21
IS  - 10
SP  - 3671
DO  - 10.3390/ijms21103671
ER  - 
@article{
author = "Isca, Vera M. S. and Senćanski, Milan V. and Filipović, Nenad R. and Dos Santos, Daniel J. V. A. and Čipak Gašparović, Ana and Saraiva, Lucilia and Afonso, Carlos A M and Rijo, Patrícia and Garcia-Sosa, Alfonso T",
year = "2020",
abstract = "Plants have been used for centuries to treat several illnesses. The Plectranthus genus has a vast variety of species that has allowed the isolation of cytotoxic compounds with notable activities. The abietane diterpenes 6,7-dehydroroyleanone (DeRoy, 1), 7α-acetoxy-6β-hydroxyroyleanone (Roy, 2), and Parvifloron D (ParvD, 3) were obtained from Plectranthus spp. and showed promising biological activities, such as cytotoxicity. The inhibitory effects of the different natural abietanes (1-3) were compared in MFC7, SkBr3, and SUM159 cell lines, as well as SUM159 grown in cancer stem cell-inducing conditions. Based on the royleanones’ bioactivity, the derivatives RoyBz (4), RoyBzCl (5), RoyPr2 (6), and DihydroxyRoy (7), previously obtained from 2, were selected for further studies. Protein kinases C (PKCs) are involved in several carcinogenic processes. Thus, PKCs are potential targets for cancer therapy. To date, the portfolio of available PKC modulators remains very limited due to the difficulty of designing isozyme-selective PKC modulators. As such, molecular docking was used to evaluate royleanones 1-6 as predicted isozyme-selective PKC binders. Subtle changes in the binding site of each PKC isoform change the predicted interaction profiles of the ligands. Subtle changes in royleanone substitution patterns, such as a double substitution only with non-substituted phenyls, or hydroxybenzoate at position four that flips the binding mode of ParvD (3), can increase the predicted interactions in certain PKC subtypes., Plants have been used for centuries to treat several illnesses. The Plectranthus genus has a vast variety of species that has allowed the isolation of cytotoxic compounds with notable activities. The abietane diterpenes 6,7-dehydroroyleanone (DeRoy, 1), 7α-acetoxy-6β-hydroxyroyleanone (Roy, 2), and Parvifloron D (ParvD, 3) were obtained from Plectranthus spp. and showed promising biological activities, such as cytotoxicity. The inhibitory effects of the different natural abietanes (1-3) were compared in MFC7, SkBr3, and SUM159 cell lines, as well as SUM159 grown in cancer stem cell-inducing conditions. Based on the royleanones’ bioactivity, the derivatives RoyBz (4), RoyBzCl (5), RoyPr2 (6), and DihydroxyRoy (7), previously obtained from 2, were selected for further studies. Protein kinases C (PKCs) are involved in several carcinogenic processes. Thus, PKCs are potential targets for cancer therapy. To date, the portfolio of available PKC modulators remains very limited due to the difficulty of designing isozyme-selective PKC modulators. As such, molecular docking was used to evaluate royleanones 1-6 as predicted isozyme-selective PKC binders. Subtle changes in the binding site of each PKC isoform change the predicted interaction profiles of the ligands. Subtle changes in royleanone substitution patterns, such as a double substitution only with non-substituted phenyls, or hydroxybenzoate at position four that flips the binding mode of ParvD (3), can increase the predicted interactions in certain PKC subtypes.",
journal = "International Journal of Molecular Sciences",
title = "Activity to Breast Cancer Cell Lines of Different Malignancy and Predicted Interaction with Protein Kinase C Isoforms of Royleanones",
volume = "21",
number = "10",
pages = "3671",
doi = "10.3390/ijms21103671"
}
Isca, V. M. S., Senćanski, M. V., Filipović, N. R., Dos Santos, D. J. V. A., Čipak Gašparović, A., Saraiva, L., Afonso, C. A. M., Rijo, P.,& Garcia-Sosa, A. T.. (2020). Activity to Breast Cancer Cell Lines of Different Malignancy and Predicted Interaction with Protein Kinase C Isoforms of Royleanones. in International Journal of Molecular Sciences, 21(10), 3671.
https://doi.org/10.3390/ijms21103671
Isca VMS, Senćanski MV, Filipović NR, Dos Santos DJVA, Čipak Gašparović A, Saraiva L, Afonso CAM, Rijo P, Garcia-Sosa AT. Activity to Breast Cancer Cell Lines of Different Malignancy and Predicted Interaction with Protein Kinase C Isoforms of Royleanones. in International Journal of Molecular Sciences. 2020;21(10):3671.
doi:10.3390/ijms21103671 .
Isca, Vera M. S., Senćanski, Milan V., Filipović, Nenad R., Dos Santos, Daniel J. V. A., Čipak Gašparović, Ana, Saraiva, Lucilia, Afonso, Carlos A M, Rijo, Patrícia, Garcia-Sosa, Alfonso T, "Activity to Breast Cancer Cell Lines of Different Malignancy and Predicted Interaction with Protein Kinase C Isoforms of Royleanones" in International Journal of Molecular Sciences, 21, no. 10 (2020):3671,
https://doi.org/10.3390/ijms21103671 . .

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