Literature DB >> 17363504

A duplexed phenotypic screen for the simultaneous detection of inhibitors of the molecular chaperone heat shock protein 90 and modulators of cellular acetylation.

Anthea Hardcastle1, Peter Tomlin, Clair Norris, Juliet Richards, Matthew Cordwell, Katherine Boxall, Martin Rowlands, Keith Jones, Ian Collins, Edward McDonald, Paul Workman, Wynne Aherne.   

Abstract

Histone deacetylases (HDACs), histone acetyltransferases (HATs), and the molecular chaperone heat shock protein 90 (HSP90) are attractive anticancer drug targets. High-throughput screening plays a pivotal role in modern molecular mechanism-based drug discovery. Cell-based screens are particularly useful in that they identify compounds that are permeable and active against the selected target or pathway in a cellular context. We have previously developed time-resolved fluorescence cell immunosorbent assays (TRF-Cellisas) for compound screening and pharmacodynamic studies. These assays use a primary antibody to the single protein of interest and a matched secondary immunoglobulin labeled with an europium chelate (Eu). The availability of species-specific secondary antibodies labeled with different lanthanide chelates provides the potential for multiplexing this type of assay. The approach has been applied to the development of a 384-well duplexed cell-based screen to simultaneously detect compounds that induce the co-chaperone HSP70 as a molecular marker of potential inhibitors of HSP90 together with those that modulate cellular acetylation (i.e., potential inhibitors of histone deacetylase or histone acetyltransferase activity). The duplexed assay proved reliable in high-throughput format and approximately 64,000 compounds were screened. Following evaluation in secondary assays, 3 of 13 hits from the HSP70 arm were confirmed. Two of these directly inhibited the intrinsic ATPase activity of HSP90 whereas the third seems to have a different mechanism of action. In the acetylation arm, two compounds increased cellular acetylation, one of which inhibited histone deacetylase activity. A third compound decreased cellular histone acetylation, potentially through a novel mechanism of action.

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Year:  2007        PMID: 17363504     DOI: 10.1158/1535-7163.MCT-06-0496

Source DB:  PubMed          Journal:  Mol Cancer Ther        ISSN: 1535-7163            Impact factor:   6.261


  3 in total

1.  A cell-based screen for inhibitors of protein folding and degradation.

Authors:  Frank Boschelli; Jennifer M Golas; Roseann Petersen; Vincent Lau; Lei Chen; Diane Tkach; Qiang Zhao; Dave S Fruhling; Hao Liu; Chaneun Nam; Kim T Arndt
Journal:  Cell Stress Chaperones       Date:  2010-08-19       Impact factor: 3.667

2.  Design of a flexible cell-based assay for the evaluation of heat shock protein 70 expression modulators.

Authors:  James H Ahn; Wenjie Luo; Joungnam Kim; Anna Rodina; Cristina C Clement; Julia Aguirre; Weilin Sun; Yanlong Kang; Ronnie Maharaj; Kamalika Moulick; Danuta Zatorska; Malgorzata Kokoszka; Jeffrey L Brodsky; Gabriela Chiosis
Journal:  Assay Drug Dev Technol       Date:  2010-12-06       Impact factor: 1.738

3.  An AlphaScreen-based high-throughput screen to identify inhibitors of Hsp90-cochaperone interaction.

Authors:  Fang Yi; Pingjun Zhu; Noel Southall; James Inglese; Christopher P Austin; Wei Zheng; Lynne Regan
Journal:  J Biomol Screen       Date:  2009-02-11
  3 in total

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