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Molecular Mechanism of Protein Kinase Recognition and Sorting by the Hsp90 Kinome-Specific Cochaperone Cdc37

机译:蛋白激酶识别的分子机制,HSP90 Kinome特异性Cochaperors CDC37分类

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摘要

Despite the essential functions of Hsp90, little is known about the mechanism that controls substrate entry into its chaperone cycle. We show that the role of Cdc37 cochaperone reaches beyond that of an adaptor protein and find that it participates in the selective recruitment of only client kinases. Cdc37 recognizes kinase specificity determinants in both clients and nonclients and acts as a general kinase scanning factor. Kinase sorting within the client-tononclient continuum relies on the ability of Cdc37 to challenge the conformational stability of clients by locally unfolding them. This metastable conformational state has high affinity for Cdc37 and forms stable complexes through a multidomain cochaperone interface. The interaction with nonclients is not accompanied by conformational changes of the substrate and results in substrate dissociation. Collectively, Cdc37 performs a quality control of protein kinases, where induced conformational instability acts as a "flag" for Hsp90 dependence and stable cochaperone association.
机译:尽管HSP90的基本功能,但对控制衬底进入其伴侣循环的机制很少。我们表明,CDC37 Cochaperone的作用达到了适配器蛋白的作用,并发现它仅参与唯一的客户机激酶的招募。 CDC37识别客户端和非校准中的激酶特异性决定因素,并充当一般激酶扫描因子。客户 - 吨位范围内的激酶排序依赖于CDC37通过本地展开它们挑战客户的构象稳定性。这种亚稳态的构象状态对CDC37具有高亲和力,通过多麦田科切内界面形成稳定的配合物。与非增性的相互作用不伴随基板的构象变化并导致衬底解离。集体,CDC37进行蛋白激酶的质量控制,其中诱导的构象不稳定性作为HSP90依赖性和稳定的Cochaperone联合的“标志”。

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