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热休克蛋白90(Hsp90)的高亲和力结合是由其激酶客户蛋白的多个离散片段触发的。

High affinity binding of Hsp90 is triggered by multiple discrete segments of its kinase clients.

作者信息

Scroggins Bradley T, Prince Thomas, Shao Jieya, Uma Sheri, Huang Wenjun, Guo Yanwen, Yun Bo-Geon, Hedman Karla, Matts Robert L, Hartson Steven D

机构信息

Department of Biochemistry and Molecular Biology, Oklahoma State University, Stillwater, Oklahoma 74078-3035, USA.

出版信息

Biochemistry. 2003 Nov 4;42(43):12550-61. doi: 10.1021/bi035001t.

Abstract

The 90 kDa heat shock protein (Hsp90) cooperates with its co-chaperone Cdc37 to provide obligatory support to numerous protein kinases involved in the regulation of cellular signal transduction pathways. In this report, crystal structures of protein kinases were used to guide the dissection of two kinases [the Src-family tyrosine kinase, Lck, and the heme-regulated eIF2alpha kinase (HRI)], and the association of Hsp90 and Cdc37 with these constructs was assessed. Hsp90 interacted with both the N-terminal (NL) and C-terminal (CL) lobes of the kinases' catalytic domains. In contrast, Cdc37 interacted only with the NL. The Hsp90 antagonist molybdate was necessary to stabilize the interactions between isolated subdomains and Hsp90 or Cdc37, but the presence of both lobes of the kinases' catalytic domain generated a stable salt-resistant chaperone-client heterocomplex. The Hsp90 co-chaperones FKBP52 and p23 interacted with the catalytic domain and the NL of Lck, whereas protein phosphatase 5 demonstrated unique modes of kinase binding. Cyp40 was a salt labile component of Hsp90 complexes formed with the full-length, catalytic domains, and N-terminal catalytic lobes of Lck and HRI. Additionally, dissections identify a specific kinase motif that triggers Hsp90's conformational switching to a high-affinity client binding state. Results indicate that the Hsp90 machine acts as a versatile chaperone that recognizes multiple regions of non-native proteins, while Cdc37 binds to a more specific kinase segment, and that concomitant recognition of multiple client segments is communicated to generate or stabilize high-affinity chaperone-client heterocomplexes.

摘要

90 kDa热休克蛋白(Hsp90)与其共伴侣蛋白Cdc37协同作用,为众多参与细胞信号转导通路调控的蛋白激酶提供必需的支持。在本报告中,利用蛋白激酶的晶体结构指导对两种激酶[Src家族酪氨酸激酶Lck和血红素调节的eIF2α激酶(HRI)]进行剖析,并评估Hsp90和Cdc37与这些构建体的结合情况。Hsp90与激酶催化结构域的N端(NL)和C端(CL)叶均相互作用。相比之下,Cdc37仅与NL相互作用。Hsp90拮抗剂钼酸盐对于稳定分离的亚结构域与Hsp90或Cdc37之间的相互作用是必需的,但激酶催化结构域的两个叶的存在产生了一种稳定的抗盐伴侣-客户异源复合物。Hsp90共伴侣蛋白FKBP52和p23与Lck的催化结构域和NL相互作用,而蛋白磷酸酶5表现出独特的激酶结合模式。Cyp40是与Lck和HRI的全长、催化结构域及N端催化叶形成的Hsp90复合物中的盐敏感成分。此外,剖析鉴定出一个特定的激酶基序,该基序触发Hsp90向高亲和力客户结合状态的构象转换。结果表明,Hsp90机器作为一种多功能伴侣蛋白,可识别非天然蛋白的多个区域,而Cdc37则结合到更特定的激酶区段,并且对多个客户区段的同时识别会传递以产生或稳定高亲和力的伴侣-客户异源复合物。

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