The co-chaperone p23 arrests the Hsp90 ATPase cycle to trap client proteins

被引:144
作者
McLaughlin, SH
Sobott, F
Yaol, ZP
Zhang, W
Nielsen, PR
Grossmann, JG
Laue, ED
Robinson, CV
Jackson, SE
机构
[1] Univ Cambridge, Chem Lab, Cambridge CB2 1EW, England
[2] Univ Cambridge, Dept Biochem, Cambridge CB2 1GA, England
[3] CCLRC Daresbury Lab, Synchrotron Radiat Dept, Warrington WA4 4AD, Cheshire, England
关键词
molecular chaperone; Hsp90; heat shock; protein folding; p23;
D O I
10.1016/j.jmb.2005.11.085
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
The action of the molecular chaperone Hsp90 is essential for the activation and assembly of an increasing number of client proteins. This function of Hsp90 has been proposed to be governed by conformational changes driven by ATP binding and hydrolysis. Association of co-chaperones and client proteins regulate the ATPase activity of Hsp90. Here, we have examined the inhibition of the ATPase activity of human Hsp90 beta by one such co-chaperone, human p23. We demonstrate that human p23 interacts with Hsp90 in both the absence and presence of nucleotide with a higher affinity in the presence of the ATP analogue AMP-PNP. This is consistent with an analysis of the effect of p23 on the steady-state kinetics that revealed a mixed mechanism of inhibition. Mass spectrometry of the intact Hsp90.p23 complex determined the stoichiometry of binding to be one p23 to each subunit of the Hsp90 dimer. p23 was also shown to interact with a monomeric, truncated fragment of Hsp90, lacking the C-terminal homodimerisation domain, indicating dimerisation of Hsp90 is not a prerequisite for association with p23. Complex formation between Hsp90 and p23 increased the apparent affinity of Hsp90 for AMP-PNP and completely inhibited the ATPase activity. We propose a model where the role of p23 is to lock individual subunits of Hsp90 in an ATP-dependent conformational state that has a high affinity for client proteins. (c) 2005 Elsevier Ltd. All rights reserved.
引用
收藏
页码:746 / 758
页数:13
相关论文
共 58 条
[1]   The Hsp90 co-chaperones Cdc37 and Sti1 interact physically and genetically [J].
Abbas-Terki, T ;
Briand, PA ;
Donzé, O ;
Picard, D .
BIOLOGICAL CHEMISTRY, 2002, 383 (09) :1335-1342
[2]   Genetic and biochemical analysis of p23 and ansamycin antibiotics in the function of Hsp90-dependent signaling proteins [J].
Bohen, SP .
MOLECULAR AND CELLULAR BIOLOGY, 1998, 18 (06) :3330-3339
[3]   Chaperone function of Hsp90-associated proteins [J].
Bose, S ;
Weikl, T ;
Bugl, H ;
Buchner, J .
SCIENCE, 1996, 274 (5293) :1715-1717
[4]   Mechanism of inorganic phosphate interaction with phosphate binding protein from Escherichia coli [J].
Brune, M ;
Hunter, JL ;
Howell, SA ;
Martin, SR ;
Hazlett, TL ;
Corrie, JET ;
Webb, MR .
BIOCHEMISTRY, 1998, 37 (29) :10370-10380
[5]   Dimerization and N-terminal domain proximity underlie the function of the molecular chaperone heat shock protein 90 [J].
Chadli, A ;
Bouhouche, I ;
Sullivan, W ;
Stensgard, B ;
McMahon, N ;
Catelli, MG ;
Toft, DO .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2000, 97 (23) :12524-12529
[6]   Folding of the glucocorticoid receptor by the heat shock protein (hsp) 90-based chaperone machinery - The role of p23 is to stabilize receptor-hsp90 heterocomplexes formed by hsp90-p60-hsp70 [J].
Dittmar, KD ;
Demady, DR ;
Stancato, LF ;
Krishna, P ;
Pratt, WB .
JOURNAL OF BIOLOGICAL CHEMISTRY, 1997, 272 (34) :21213-21220
[7]   SBA1 encodes a yeast Hsp90 cochaperone that is homologous to vertebrate p23 proteins [J].
Fang, YF ;
Fliss, AE ;
Rao, J ;
Caplan, AJ .
MOLECULAR AND CELLULAR BIOLOGY, 1998, 18 (07) :3727-3734
[8]  
Freeman BC, 2000, GENE DEV, V14, P422
[9]   Molecular chaperone machines: Chaperone activities of the cyclophilin Cyp-40 and the steroid aporeceptor-associated protein p23 [J].
Freeman, BC ;
Toft, DO ;
Morimoto, RI .
SCIENCE, 1996, 274 (5293) :1718-1720
[10]   The importance of ATP binding and hydrolysis by hsp90 in formation and function of protein heterocomplexes [J].
Grenert, JP ;
Johnson, BD ;
Toft, DO .
JOURNAL OF BIOLOGICAL CHEMISTRY, 1999, 274 (25) :17525-17533