Crnolatac, Ivo

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Highly water-soluble ruthenium(II) terpyridine coordination compounds form stable adducts with blood-borne metal transporting proteins

Nišavić, Marija; Stoiljković, Milovan; Crnolatac, Ivo; Milošević, Maja; Rilak, Ana; Masnikosa, Romana

(2018)

TY  - JOUR
AU  - Nišavić, Marija
AU  - Stoiljković, Milovan
AU  - Crnolatac, Ivo
AU  - Milošević, Maja
AU  - Rilak, Ana
AU  - Masnikosa, Romana
PY  - 2018
UR  - http://linkinghub.elsevier.com/retrieve/pii/S1878535216301198
UR  - https://vinar.vin.bg.ac.rs/handle/123456789/7665
AB  - Three coordination compounds of ruthenium(II), belonging to a recently synthesised series of water-soluble compounds of general formula mer-{[}Ru(L3)(N-N) Cl] Cl, where L3 = 4'-chloro2,2': 6', 200-terpyridine (Cl-tpy), N-N= ethylenediamine (en), 1,2-diaminocyclohexane (dach) or 2,2'bipyridine (bpy), have shown strong binding to calf thymus DNA and moderate in vitro cytotoxicity towards cancer cell lines. Knowing that serum proteins play a crucial role in the transport and deactivation of ruthenium drugs, we have conducted a detailed study of their interactions with two major metal-transporting serum proteins, albumin and transferrin, and it is presented herein. Ruthenated protein adducts were formed with various concentrations of the three compounds and then separated from the unbound portions by ultrafiltration through 10 kDa cut-off centrifugal filter units. The stoichiometry of binding was determined using inductively coupled plasma optical emission spectrometry. One mol of albumin bound up to 7, 8.5 and 1.5 mol of compound 1 ({[}Ru(Cltpy)(en) Cl]{[}Cl]), 2 ({[}Ru(Cl-tpy)(dach) Cl]{[}Cl] and 3 ({[}Ru(Cl-tpy)(bpy) Cl]{[}Cl]), respectively. One mol of transferrin bound up to 3, 3.5 and 0.4 mol of 1, 2 and 3, respectively. The affinity of albumin and transferrin for the three ruthenium compounds was evaluated using fluorescence quenching. The binding constants for 1 and 2 lay within the range 10(4) -10(5) M - 1, suggesting moderate-to-strong attachment to albumin. Both compounds showed much lower affinity for transferrin (10(2) -10(3) M - 1). Compound 3 bound weakly to each studied protein. High resolution ESI qTOF mass spectra of albumin before and after binding of 1 revealed the high stoichiometry of binding. Although the binding of the compounds 1-3 to albumin and transferrin did not affect proteins' secondary structure much, their tertiary structures underwent some alterations, as deduced from the circular dichroism study. Changes in the stability of albumin, after binding to compounds 1-3 were examined by differential scanning calorimetry. (C) 2016 The Authors. Production and hosting by Elsevier B. V. on behalf of King Saud University. This is an open access article under theCCBY-NC-NDlicense.
T2  - Arabian Journal of Chemistry
T1  - Highly water-soluble ruthenium(II) terpyridine coordination compounds form stable adducts with blood-borne metal transporting proteins
VL  - 11
IS  - 3
SP  - 291
EP  - 304
DO  - 10.1016/j.arabjc.2016.07.021
ER  - 
@article{
author = "Nišavić, Marija and Stoiljković, Milovan and Crnolatac, Ivo and Milošević, Maja and Rilak, Ana and Masnikosa, Romana",
year = "2018",
abstract = "Three coordination compounds of ruthenium(II), belonging to a recently synthesised series of water-soluble compounds of general formula mer-{[}Ru(L3)(N-N) Cl] Cl, where L3 = 4'-chloro2,2': 6', 200-terpyridine (Cl-tpy), N-N= ethylenediamine (en), 1,2-diaminocyclohexane (dach) or 2,2'bipyridine (bpy), have shown strong binding to calf thymus DNA and moderate in vitro cytotoxicity towards cancer cell lines. Knowing that serum proteins play a crucial role in the transport and deactivation of ruthenium drugs, we have conducted a detailed study of their interactions with two major metal-transporting serum proteins, albumin and transferrin, and it is presented herein. Ruthenated protein adducts were formed with various concentrations of the three compounds and then separated from the unbound portions by ultrafiltration through 10 kDa cut-off centrifugal filter units. The stoichiometry of binding was determined using inductively coupled plasma optical emission spectrometry. One mol of albumin bound up to 7, 8.5 and 1.5 mol of compound 1 ({[}Ru(Cltpy)(en) Cl]{[}Cl]), 2 ({[}Ru(Cl-tpy)(dach) Cl]{[}Cl] and 3 ({[}Ru(Cl-tpy)(bpy) Cl]{[}Cl]), respectively. One mol of transferrin bound up to 3, 3.5 and 0.4 mol of 1, 2 and 3, respectively. The affinity of albumin and transferrin for the three ruthenium compounds was evaluated using fluorescence quenching. The binding constants for 1 and 2 lay within the range 10(4) -10(5) M - 1, suggesting moderate-to-strong attachment to albumin. Both compounds showed much lower affinity for transferrin (10(2) -10(3) M - 1). Compound 3 bound weakly to each studied protein. High resolution ESI qTOF mass spectra of albumin before and after binding of 1 revealed the high stoichiometry of binding. Although the binding of the compounds 1-3 to albumin and transferrin did not affect proteins' secondary structure much, their tertiary structures underwent some alterations, as deduced from the circular dichroism study. Changes in the stability of albumin, after binding to compounds 1-3 were examined by differential scanning calorimetry. (C) 2016 The Authors. Production and hosting by Elsevier B. V. on behalf of King Saud University. This is an open access article under theCCBY-NC-NDlicense.",
journal = "Arabian Journal of Chemistry",
title = "Highly water-soluble ruthenium(II) terpyridine coordination compounds form stable adducts with blood-borne metal transporting proteins",
volume = "11",
number = "3",
pages = "291-304",
doi = "10.1016/j.arabjc.2016.07.021"
}
Nišavić, M., Stoiljković, M., Crnolatac, I., Milošević, M., Rilak, A.,& Masnikosa, R.. (2018). Highly water-soluble ruthenium(II) terpyridine coordination compounds form stable adducts with blood-borne metal transporting proteins. in Arabian Journal of Chemistry, 11(3), 291-304.
https://doi.org/10.1016/j.arabjc.2016.07.021
Nišavić M, Stoiljković M, Crnolatac I, Milošević M, Rilak A, Masnikosa R. Highly water-soluble ruthenium(II) terpyridine coordination compounds form stable adducts with blood-borne metal transporting proteins. in Arabian Journal of Chemistry. 2018;11(3):291-304.
doi:10.1016/j.arabjc.2016.07.021 .
Nišavić, Marija, Stoiljković, Milovan, Crnolatac, Ivo, Milošević, Maja, Rilak, Ana, Masnikosa, Romana, "Highly water-soluble ruthenium(II) terpyridine coordination compounds form stable adducts with blood-borne metal transporting proteins" in Arabian Journal of Chemistry, 11, no. 3 (2018):291-304,
https://doi.org/10.1016/j.arabjc.2016.07.021 . .
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