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The tumor inhibitor and antiangiogenic agent withaferin A targets the intermediate filament protein vimentin.


ABSTRACT: The natural product withaferin A (WFA) exhibits antitumor and antiangiogenesis activity in vivo, which results from this drug's potent growth inhibitory activities. Here, we show that WFA binds to the intermediate filament (IF) protein, vimentin, by covalently modifying its cysteine residue, which is present in the highly conserved alpha-helical coiled coil 2B domain. WFA induces vimentin filaments to aggregate in vitro, an activity manifested in vivo as punctate cytoplasmic aggregates that colocalize vimentin and F-actin. WFA's potent dominant-negative effect on F-actin requires vimentin expression and induces apoptosis. Finally, we show that WFA-induced inhibition of capillary growth in a mouse model of corneal neovascularization is compromised in vimentin-deficient mice. These findings identify WFA as a chemical genetic probe of IF functions, and illuminate a potential molecular target for withanolide-based therapeutics for treating angioproliferative and malignant diseases.

SUBMITTER: Bargagna-Mohan P 

PROVIDER: S-EPMC3228641 | biostudies-literature | 2007 Jun

REPOSITORIES: biostudies-literature

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The tumor inhibitor and antiangiogenic agent withaferin A targets the intermediate filament protein vimentin.

Bargagna-Mohan Paola P   Hamza Adel A   Kim Yang-eon YE   Khuan Abby Ho Yik Y   Mor-Vaknin Nirit N   Wendschlag Nicole N   Liu Junjun J   Evans Robert M RM   Markovitz David M DM   Zhan Chang-Guo CG   Kim Kyung Bo KB   Mohan Royce R  

Chemistry & biology 20070601 6


The natural product withaferin A (WFA) exhibits antitumor and antiangiogenesis activity in vivo, which results from this drug's potent growth inhibitory activities. Here, we show that WFA binds to the intermediate filament (IF) protein, vimentin, by covalently modifying its cysteine residue, which is present in the highly conserved alpha-helical coiled coil 2B domain. WFA induces vimentin filaments to aggregate in vitro, an activity manifested in vivo as punctate cytoplasmic aggregates that colo  ...[more]

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