Heat shock protein 90 (Hsp90) is a significant target in the development of rational cancer therapy due to its role at the crossroads of multiple signaling pathways associated with cell proliferation and cell viability. The relevance of Hsp90 as a therapeutic target for numerous diseases states has prompted the identification and optimization of novel Hsp90 inhibitors as an emerging therapeutic strategy. We performed a screening aimed to identify novel Hsp90 inhibitors among several natural compounds and we focused on the iminosugar (+)-lentiginosine, a natural amyloglucosidases inhibitor, for its peculiar bioactivity profile. Characterization of Hsp90 inhibition was performed using a panel of chemical and biological approaches, including limited proteolysis, biochemical and cellular assays. Our result suggested that the middle domain of Hsp90, as opposed to its ATP-binding pocket, is a promising binding site for new classes of Hsp90 inhibitors with multitarget anti-cancer potential.

Natural iminosugar (+)-lentiginosine inhibits ATPase and chaperone activity of Hsp90 / F. Dal Piaz; A. Vassallo; M. G. Chini; F. M. Cordero; F. Cardona; C. Pisano; G. Bifulco; N. De Tommasi; A. Brandi. - In: PLOS ONE. - ISSN 1932-6203. - ELETTRONICO. - 7:(2012), pp. e43316-e43316. [10.1371/journal.pone.0043316]

Natural iminosugar (+)-lentiginosine inhibits ATPase and chaperone activity of Hsp90

CORDERO, FRANCA MARIA;CARDONA, FRANCESCA;BRANDI, ALBERTO
2012

Abstract

Heat shock protein 90 (Hsp90) is a significant target in the development of rational cancer therapy due to its role at the crossroads of multiple signaling pathways associated with cell proliferation and cell viability. The relevance of Hsp90 as a therapeutic target for numerous diseases states has prompted the identification and optimization of novel Hsp90 inhibitors as an emerging therapeutic strategy. We performed a screening aimed to identify novel Hsp90 inhibitors among several natural compounds and we focused on the iminosugar (+)-lentiginosine, a natural amyloglucosidases inhibitor, for its peculiar bioactivity profile. Characterization of Hsp90 inhibition was performed using a panel of chemical and biological approaches, including limited proteolysis, biochemical and cellular assays. Our result suggested that the middle domain of Hsp90, as opposed to its ATP-binding pocket, is a promising binding site for new classes of Hsp90 inhibitors with multitarget anti-cancer potential.
2012
7
e43316
e43316
F. Dal Piaz; A. Vassallo; M. G. Chini; F. M. Cordero; F. Cardona; C. Pisano; G. Bifulco; N. De Tommasi; A. Brandi
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Utilizza questo identificatore per citare o creare un link a questa risorsa: https://hdl.handle.net/2158/648665
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