Novobiocin

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CAS: 303-81-1
MF: C31H36N2O11
MW: 612.62434
Synonyms: Novobiocin

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Lan Liu

Sun Yat-Sen University
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Brian S. J. Blagg

The University of Kansas
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Co-reporter: Suman Ghosh, Heather E. Shinogle, Gaurav Garg, George A. Vielhauer, Jeffrey M. Holzbeierlein, Rick T. Dobrowsky, and Brian S. J. Blagg
pp: 577
Publication Date(Web):November 17, 2014
DOI: 10.1021/cb5008713
Human Hsp90 isoforms are molecular chaperones that are often up-regulated in malignances and represent a primary target for Hsp90 inhibitors undergoing clinical evaluation. Hsp90α is a stress-inducible isoform of Hsp90 that plays a significant role in apoptosis and metastasis. Though Hsp90α is secreted into the extracellular space under metastatic conditions, its role in cancer biology is poorly understood. We report that Hsp90α associates with the Aha1 co-chaperone and found this complex to localize in secretory vesicles and at the leading edge of migrating cells. Knockdown of Hsp90α resulted in a defect in cell migration. The functional role of Hsp90α/Aha1 was studied by treating the cells with various novobiocin-based Hsp90 C-terminal inhibitors. These inhibitors disrupted the Hsp90α/Aha1 complex, caused a cytoplasmic redistribution of Hsp90α and Aha1, and decreased cell migration. Structure–function studies determined that disruption of Hsp90α/Aha1 association and inhibition of cell migration correlated with the presence of a benzamide side chain, since an acetamide substituted analog was less effective. Our results show that disruption of Hsp90α/Aha1 interactions with novobiocin-based Hsp90 C-terminal inhibitors may limit the metastatic potential of tumors.

Yinan Wei

University of Kentucky
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Paul B. Savage

Brigham Young University
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Barry M. Willardson

Brigham Young University niversity
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Gavin J. Williams

North Carolina State University
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Jeremy Lessmann

Washington State University
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Shawn R. Campagna

University of Tennessee, Knoxville
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Valentin V. Rybenkov

University of Oklahoma
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Christian Friedrich

Freiburg Materials Research Center FMF
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