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Investigating the allosteric reverse signalling of PARP inhibitors with microsecond molecular dynamic simulations and fluorescence anisotropy.

Authors :
Marchand, Jean-Rémy
Carotti, Andrea
Passeri, Daniela
Filipponi, Paolo
Liscio, Paride
Camaioni, Emidio
Pellicciari, Roberto
Gioiello, Antimo
Macchiarulo, Antonio
Source :
BBA - Proteins & Proteomics. Oct2014, Vol. 1844 Issue 10, p1765-1772. 8p.
Publication Year :
2014

Abstract

The inhibition of the poly(ADP-ribose) polymerase (PARP) family members is a strategy pursued for the development of novel therapeutic agents in a range of diseases, including stroke, cardiac ischemia, cancer, inflammation and diabetes. Even though some PARP-1 inhibitors have advanced to clinical setting for cancer therapy, a great deal of attention is being devoted to understand the polypharmacology of current PARP inhibitors. Besides blocking the catalytic activity, recent works have shown that some PARP inhibitors exhibit a poisoning activity, by trapping the enzyme at damaged sites of DNA and forming cytotoxic complexes. In this study we have used microsecond molecular dynamics to study the allosteric reverse signalling that is at the basis of such an effect. We show that Olaparib, but not Veliparib and HYDAMTIQ, is able to induce a specific conformational drift of the WGR domain of PARP-1, which stabilizes PARP-1/DNA complex through the locking of several salt bridge interactions. Fluorescence anisotropy assays support such a mechanism, providing the first experimental evidence that HYDAMTIQ, a potent PARP inhibitor with neuroprotective properties, is less potent than Olaparib to trap PARP-1/DNA complex. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
15709639
Volume :
1844
Issue :
10
Database :
Academic Search Index
Journal :
BBA - Proteins & Proteomics
Publication Type :
Academic Journal
Accession number :
97935712
Full Text :
https://doi.org/10.1016/j.bbapap.2014.07.012