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二聚化和N端结构域的接近是分子伴侣热休克蛋白90功能的基础。

Dimerization and N-terminal domain proximity underlie the function of the molecular chaperone heat shock protein 90.

作者信息

Chadli A, Bouhouche I, Sullivan W, Stensgard B, McMahon N, Catelli M G, Toft D O

机构信息

Mayo Clinic, Department of Biochemistry and Molecular Biology, 200 First Street SW, Rochester, MN 55905, USA.

出版信息

Proc Natl Acad Sci U S A. 2000 Nov 7;97(23):12524-9. doi: 10.1073/pnas.220430297.

Abstract

Heat shock protein (hsp)90 functions in a complex chaperoning pathway where its activity is modulated by ATP and by interaction with several co-chaperones. One co-chaperone, p23, binds selectively to the ATP-bound state of hsp90. However, the isolated ATP-binding domain of hsp90 does not bind p23. In an effort to identify the p23-binding domain, we have constructed a series of hsp90 deletion mutants fused with glutathione-S-transferase (GST). Full-length GST-hsp90 is able to bind p23, and also, to chaperone assembly of progesterone receptor complexes. Truncations from the C terminus of GST-hsp90 reveal a C-terminal boundary for the p23-binding domain at approximately residue 490. This fragment contains, in order, the ATP-binding domain, a highly charged region, and 203 residues beyond the charged region. p23 binding is unaffected by deletion of the charged region, indicating that two noncontiguous regions of hsp90 are involved in p23 binding. These regions are only effective when hsp90 is in a dimeric state as shown by loss of p23 binding upon removal of GST or as shown by use of FK506-binding protein12-hsp90 constructs that form dimers and bind p23 only in the presence of a bivalent drug. Thus, p23 binding requires an hsp90 dimer with close proximity between N-terminal regions of hsp90 and a conformation specified by ATP.

摘要

热休克蛋白(hsp)90在一个复杂的伴侣蛋白途径中发挥作用,其活性受ATP以及与多种共伴侣蛋白相互作用的调节。一种共伴侣蛋白p23选择性地结合hsp90的ATP结合状态。然而,hsp90分离出的ATP结合结构域并不结合p23。为了确定p23结合结构域,我们构建了一系列与谷胱甘肽-S-转移酶(GST)融合的hsp90缺失突变体。全长GST-hsp90能够结合p23,并且还能介导孕酮受体复合物的伴侣蛋白组装。从GST-hsp90的C末端进行截短,发现p23结合结构域的C末端边界大约在第490位残基处。该片段依次包含ATP结合结构域、一个高度带电区域以及带电区域之后的203个残基。删除带电区域并不影响p23的结合,这表明hsp90的两个不连续区域参与了p23的结合。这些区域只有在hsp90处于二聚体状态时才有效,如去除GST后p23结合丧失所示,或者如使用FK5*结合蛋白12-hsp90构建体所示,该构建体形成二聚体且仅在存在二价药物时结合p23。因此,p23结合需要一个hsp90二聚体,其中hsp90的N末端区域之间紧密相邻且具有由ATP指定的构象。

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