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Novel Hsp90 Partners Discovered Using Complementary Proteomic Approaches

Overview
Publisher Elsevier
Specialty Cell Biology
Date 2009 Apr 28
PMID 19396626
Citations 31
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Abstract

Hsp90 is an essential eukaryotic molecular chaperone that stabilizes a large set of client proteins, many of which are involved in various cellular signaling pathways. The current list of Hsp90 interactors comprises about 200 proteins and this number is growing steadily. In this paper, we report on the application of three complementary proteomic approaches directed towards identification of novel proteins that interact with Hsp90. These methods are coimmunoprecipitation, pull down with biotinylated geldanamycin, and immobilization of Hsp90beta on sepharose. In all, this study led to the identification of 42 proteins, including 18 proteins that had not been previously characterized as Hsp90 interactors. These novel Hsp90 partners not only represent abundant protein species, but several proteins were identified at low levels, among which signaling kinase Cdk3 and putative transcription factor tripartite motif-containing protein 29. Identification of tetratricopeptide-repeat-containing mitochondrial import receptor protein Tom34 suggests the involvement of Hsp90 in the early steps of translocation of mitochondrial preproteins. Taken together, our data expand the knowledge of the Hsp90 interactome and provide a further step in our understanding of the Hsp90 chaperone system.

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References
1.
Lamphere L, Fiore F, Xu X, Brizuela L, Keezer S, Sardet C . Interaction between Cdc37 and Cdk4 in human cells. Oncogene. 1997; 14(16):1999-2004. DOI: 10.1038/sj.onc.1201036. View

2.
Citri A, Harari D, Shohat G, Ramakrishnan P, Gan J, Lavi S . Hsp90 recognizes a common surface on client kinases. J Biol Chem. 2006; 281(20):14361-9. DOI: 10.1074/jbc.M512613200. View

3.
Pearl L, Prodromou C, Workman P . The Hsp90 molecular chaperone: an open and shut case for treatment. Biochem J. 2008; 410(3):439-53. DOI: 10.1042/BJ20071640. View

4.
Schumacher J, Crockett D, Elenitoba-Johnson K, Lim M . Proteome-wide changes induced by the Hsp90 inhibitor, geldanamycin in anaplastic large cell lymphoma cells. Proteomics. 2007; 7(15):2603-16. DOI: 10.1002/pmic.200700108. View

5.
Terasawa K, Yoshimatsu K, Iemura S, Natsume T, Tanaka K, Minami Y . Cdc37 interacts with the glycine-rich loop of Hsp90 client kinases. Mol Cell Biol. 2006; 26(9):3378-89. PMC: 1447410. DOI: 10.1128/MCB.26.9.3378-3389.2006. View