Back to Search Start Over

Rationalization of the inhibition activity of structurally related organometallic compounds against the drug target cathepsin B by DFT

Authors :
Nazzareno Re
Mikael Erlandsson
Andrea Ienco
Antonella Ciancetta
Fabio Edafe
Paul J. Dyson
Luca Gonsalvi
Luigi Messori
Angela Casini
Maurizio Peruzzini
Source :
Dalton transactions (2003. Online) 39 (2010): 5556–5563. doi:10.1039/c003218b, info:cnr-pdr/source/autori:Casini, Angela; Edafe, Fabio; Erlandsson, Mikael; Gonsalvi, Luca; Ciancetta, Antonella; Re, Nazzareno; Ienco, Andrea; Messori, Luigi; Peruzzini, Maurizio; Dyson, Paul J./titolo:Rationalization of the inhibition activity of structurally related organometallic compounds against drug target cathepsin B by DFT analysis/doi:10.1039%2Fc003218b/rivista:Dalton transactions (2003. Online)/anno:2010/pagina_da:5556/pagina_a:5563/intervallo_pagine:5556–5563/volume:39
Publication Year :
2010

Abstract

A series of organometallic compounds of general formula [(arene)M(PTA)(n)X(m)]Y (arene = eta(6)-C(10)H(14), eta-C(5)Me(5)); M = Ru(ii), Os(ii), Rh(iii) and Ir(iii); X = Cl, mPTA; Y = OTf, PF(6)) have been screened for their cytotoxicity and ability to inhibit cathepsin B in vitro, in comparison to the antimetastatic compound NAMI-A. The Ru and Os analogues and NAMI-A showed similar enzyme inhibition properties (with IC(50) values in the low muM range), whereas the Rh(iii) and Ir(iii) compounds were inactive. In order to build up a rational for the observed differences, DFT calculations of the metal complexes adducts with N-acetyl-l-cysteine-N'-methylamide, a mimic for the Cys residue in the cathepsin B active site, were performed to provide insights into binding thermodynamics in solution. Initial structure-activity relationships have been defined with the calculated binding energies of the M-S bonds correlating well with the observed inhibition properties of the compounds.

Details

ISSN :
14779234
Volume :
39
Issue :
23
Database :
OpenAIRE
Journal :
Dalton transactions (Cambridge, England : 2003)
Accession number :
edsair.doi.dedup.....7536b0704ea173c3924e896721c83c66
Full Text :
https://doi.org/10.1039/c003218b