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Discovery of an Anion-Dependent Farnesyltransferase Inhibitor from a Phenotypic Screen

Authors :
Ian M. Bell
Steve S. Carroll
Paula J. Hancock
Richard J. O. Barnard
M. Katharine Holloway
David M. Tellers
Alan Hruza
Gregory C. Adam
Christopher D. Cox
Peter S. Kutchukian
Matthew Tudor
Jing Li
B. Wesley Trotter
Anthony W. Shaw
Corey Strickland
Marina Bukhtiyarova
Scott E. Wolkenberg
David A. Powell
Erica M. Cook
Ivan Cornella-Taracido
Philip M. McKenna
Source :
ACS Med Chem Lett
Publication Year :
2020

Abstract

[Image: see text] By employing a phenotypic screen, a set of compounds, exemplified by 1, were identified which potentiate the ability of histone deacetylase inhibitor vorinostat to reverse HIV latency. Proteome enrichment followed by quantitative mass spectrometric analysis employing a modified analogue of 1 as affinity bait identified farnesyl transferase (FTase) as the primary interacting protein in cell lysates. This ligand-FTase binding interaction was confirmed via X-ray crystallography and temperature dependent fluorescence studies, despite 1 lacking structural and binding similarity to known FTase inhibitors. Although multiple lines of evidence established the binding interaction, these ligands exhibited minimal inhibitory activity in a cell-free biochemical FTase inhibition assay. Subsequent modification of the biochemical assay by increasing anion concentration demonstrated FTase inhibitory activity in this novel class. We propose 1 binds together with the anion in the active site to inhibit farnesyl transferase. Implications for phenotypic screening deconvolution and HIV reactivation are discussed.

Details

ISSN :
19485875
Volume :
12
Issue :
1
Database :
OpenAIRE
Journal :
ACS medicinal chemistry letters
Accession number :
edsair.doi.dedup.....044ab3f8cda6a53fa6e2f5e0430b729b