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Structural Approach To Identify a Lead Scaffold That Targets the Translesion Synthesis Polymerase Rev1

Authors :
Dash, Radha Charan
Ozen, Zuleyha
Rizzo, Alessandro A.
Lim, Socheata
Korzhnev, Dmitry M.
Hadden, M. Kyle
Source :
Journal of Chemical Information and Modeling; October 2018, Vol. 58 Issue: 11 p2266-2277, 12p
Publication Year :
2018

Abstract

Translesion synthesis (TLS) is a mechanism of replication past damaged DNA through which multiple forms of human cancer survive and acquire resistance to first-line genotoxic chemotherapies. As such, TLS is emerging as a promising target for the development of a new class of anticancer agents. The C-terminal domain of the DNA polymerase Rev1 (Rev1-CT) mediates assembly of the functional TLS complex through protein–protein interactions (PPIs) with Rev1 interacting regions (RIRs) of several other TLS DNA polymerases. Utilizing structural knowledge of the Rev1-CT/RIR interface, we have identified the phenazopyridine scaffold as an inhibitor of this essential TLS PPI. We demonstrate direct binding of this scaffold to Rev1-CT, and the synthesis and evaluation of a small series of analogues have provided important structure–activity relationships for further development of this scaffold. Furthermore, we utilized the umbrella sampling method to predict the free energy of binding to Rev1-CT for each of our analogues. Binding energies calculated through umbrella sampling correlated well with experimentally determined IC50values, validating this computational tool as a viable approach to predict the biological activity for inhibitors of the Rev1-CT/RIR PPI.

Details

Language :
English
ISSN :
15499596 and 1549960X
Volume :
58
Issue :
11
Database :
Supplemental Index
Journal :
Journal of Chemical Information and Modeling
Publication Type :
Periodical
Accession number :
ejs46688292
Full Text :
https://doi.org/10.1021/acs.jcim.8b00535