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Cruentaren A Binds F1F0 ATP Synthase To Modulate the Hsp90 Protein Folding Machinery
Author(s) -
Jessica A. Hall,
Bhaskar Reddy Kusuma,
Gary Brandt,
Brian S. J. Blagg
Publication year - 2014
Publication title -
acs chemical biology
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.899
H-Index - 111
eISSN - 1554-8937
pISSN - 1554-8929
DOI - 10.1021/cb400906e
Subject(s) - hsp90 , atp synthase , chaperone (clinical) , heat shock protein , microbiology and biotechnology , small molecule , protein folding , atpase , hsp70 , allosteric regulation , co chaperone , biochemistry , chemistry , biology , enzyme , gene , pathology , medicine
The molecular chaperone Hsp90 requires the assistance of immunophilins, co-chaperones, and partner proteins for the conformational maturation of client proteins. Hsp90 inhibition represents a promising anticancer strategy due to the dependence of numerous oncogenic signaling pathways upon Hsp90 function. Historically, small molecules have been designed to inhibit ATPase activity at the Hsp90 N-terminus; however, these molecules also induce the pro-survival heat shock response (HSR). Therefore, inhibitors that exhibit alternative mechanisms of action that do not elicit the HSR are actively sought. Small molecules that disrupt Hsp90-co-chaperone interactions can destabilize the Hsp90 complex without induction of the HSR, which leads to inhibition of cell proliferation. In this article, selective inhibition of F1F0 ATP synthase by cruentaren A was shown to disrupt the Hsp90-F1F0 ATP synthase interaction and result in client protein degradation without induction of the HSR.

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