Journal of Biological Chemistry
Volume 279, Issue 47, 19 November 2004, Pages 48846-48854
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Protein Structure and Folding
Hsp90 Regulates the Activity of Wild Type p53 under Physiological and Elevated Temperatures*

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The activity and structural integrity of the tumor suppressor protein p53 is of crucial importance for the prevention of cancer. p53 is a conformational flexible and labile protein, in which structured and unstructured regions function in a synergistic manner. The molecular chaperone Hsp90 is known to bind to mutant and wild type p53 in vivo. Using highly purified proteins we analyzed the interaction and the binding sites between both proteins in detail. Our results demonstrate that Hsp90 binds to a folded, native-like conformation of p53 in vitro with micromolar affinity. Specifically, the DNA-binding domain of p53 and the middle and carboxy-terminal domains of Hsp90 are responsible for this interaction, which is essential to stabilize p53 at physiological temperatures and to prevent it from irreversible thermal inactivation. Our results are in agreement with a model in which Hsp90 is required to maintain the folded, active state of p53 by a reversible interaction, thus introducing an additional level of regulation.

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*

This work was supported in part by grants of the Deutsche Forschungsgemeinschaft (to J. B.), by State Committee for Scientific Research Grant 3P04B02122 to Alicja Zylicz, and by V Framework Grant QLRT-2001-02833 to Maciej Zylicz. The costs of publication of this article were defrayed in part by the payment of page charges. This article must therefore be hereby marked “advertisement” in accordance with 18 U.S.C. Section 1734 solely to indicate this fact.

Recipient of a scholarship from the Postgraduate School of Molecular Medicine affiliated with the Medical University of Warsaw.

Supported by fellowships of the Studienstiftung des deutschen Volkes and the Fonds der Chemischen Industrie.