Ali Maruf M U, Roe S Mark, Vaughan Cara K, Meyer Phillipe, Panaretou Barry, Piper Peter W, Prodromou Chrisostomos, Pearl Laurence H
Section of Structural Biology, Institute of Cancer Research, Chester Beatty Laboratories, 237 Fulham Road, London SW3 6JB, UK.
Nature. 2006 Apr 20;440(7087):1013-7. doi: 10.1038/nature04716.
Hsp90 (heat shock protein of 90 kDa) is a ubiquitous molecular chaperone responsible for the assembly and regulation of many eukaryotic signalling systems and is an emerging target for rational chemotherapy of many cancers. Although the structures of isolated domains of Hsp90 have been determined, the arrangement and ATP-dependent dynamics of these in the full Hsp90 dimer have been elusive and contentious. Here we present the crystal structure of full-length yeast Hsp90 in complex with an ATP analogue and the co-chaperone p23/Sba1. The structure reveals the complex architecture of the 'closed' state of the Hsp90 chaperone, the extensive interactions between domains and between protein chains, the detailed conformational changes in the amino-terminal domain that accompany ATP binding, and the structural basis for stabilization of the closed state by p23/Sba1. Contrary to expectations, the closed Hsp90 would not enclose its client proteins but provides a bipartite binding surface whose formation and disruption are coupled to the chaperone ATPase cycle.
热休克蛋白90(90 kDa热休克蛋白)是一种普遍存在的分子伴侣,负责许多真核信号系统的组装和调节,并且是许多癌症合理化疗的新兴靶点。尽管已经确定了热休克蛋白90分离结构域的结构,但这些结构域在完整热休克蛋白90二聚体中的排列以及ATP依赖的动力学一直难以捉摸且存在争议。在此,我们展示了全长酵母热休克蛋白90与ATP类似物和共伴侣p23/Sba1形成复合物的晶体结构。该结构揭示了热休克蛋白90伴侣“封闭”状态的复杂结构、结构域之间以及蛋白质链之间的广泛相互作用、ATP结合时氨基末端结构域的详细构象变化,以及p23/Sba1稳定封闭状态的结构基础。与预期相反,封闭的热休克蛋白90不会包裹其客户蛋白,而是提供一个二分结合表面,其形成和破坏与伴侣ATP酶循环相关联。