Zentrum für Molekulare Biologie der Universität Heidelberg (ZMBH), DKFZ-ZMBH-Alliance, Heidelberg, Germany.
EMBO J. 2012 Mar 21;31(6):1518-28. doi: 10.1038/emboj.2012.37. Epub 2012 Feb 21.
In eukaryotic cells, Hsp90 chaperones assist late folding steps of many regulatory protein clients by a complex ATPase cycle. Binding of clients to Hsp90 requires prior interaction with Hsp70 and a transfer reaction that is mediated by the co-chaperone Sti1/Hop. Sti1 furthers client transfer by inhibiting Hsp90's ATPase activity. To better understand how Sti1 prepares Hsp90 for client acceptance, we characterized the interacting domains and analysed how Hsp90 and Sti1 mutually influence their conformational dynamics using hydrogen exchange mass spectrometry. Sti1 stabilizes several regions in all three domains of Hsp90 and slows down dissociation of the Hsp90 dimer. Our data suggest that Sti1 inhibits Hsp90's ATPase activity by preventing N-terminal dimerization and docking of the N-terminal domain with the middle domain. Using crosslinking and mass spectrometry we identified Sti1 segments, which are in close vicinity of the N-terminal domain of Hsp90. We found that the length of the linker between C-terminal dimerization domain and the C-terminal MEEVD motif is important for Sti1 association rates and propose a kinetic model for Sti1 binding to Hsp90.
在真核细胞中,Hsp90 伴侣蛋白通过复杂的 ATP 酶循环辅助许多调节蛋白客户的后期折叠步骤。客户与 Hsp90 的结合需要先前与 Hsp70 的相互作用和由共伴侣 Sti1/Hop 介导的转移反应。Sti1 通过抑制 Hsp90 的 ATP 酶活性来促进客户的转移。为了更好地理解 Sti1 如何为客户的接受做好准备,我们描述了相互作用的结构域,并使用氢交换质谱分析了 Hsp90 和 Sti1 如何相互影响它们的构象动力学。Sti1 稳定了 Hsp90 的所有三个结构域中的几个区域,并减缓了 Hsp90 二聚体的解离。我们的数据表明,Sti1 通过阻止 N 端二聚化和 N 端结构域与中间结构域的对接来抑制 Hsp90 的 ATP 酶活性。我们使用交联和质谱鉴定了与 Hsp90 N 端结构域紧密接近的 Sti1 片段。我们发现 C 端二聚化结构域和 C 端 MEEVD 基序之间的连接子的长度对 Sti1 结合速率很重要,并提出了 Sti1 与 Hsp90 结合的动力学模型。