Wegele Harald, Wandinger Sebastian K, Schmid Andreas B, Reinstein Jochen, Buchner Johannes
Department of Chemistry, Technische Universität München, Lichtenbergstrasse 4, 85747 Garching, Germany.
J Mol Biol. 2006 Feb 24;356(3):802-11. doi: 10.1016/j.jmb.2005.12.008. Epub 2005 Dec 20.
Hsp90 is an essential chaperone protein in the cytosol of eukaryotic cells. It cooperates with the chaperone Hsp70 in defined complexes mediated by the adaptor protein Hop (Sti1 in yeast). These Hsp70/Hsp90 chaperone complexes play a major role in the folding and maturation of key regulatory proteins in eukaryotes. Understanding how non-native client proteins are transferred from one chaperone to the other in these complexes is of central importance. Here, we analyzed the molecular mechanism of this reaction using luciferase as a substrate protein. Our experiments define a pathway for luciferase folding in the Hsp70/Hsp90 chaperone system. They demonstrate that Hsp70 is a potent capture device for unfolded protein while Hsp90 is not very efficient in this reaction. When Hsp90 is absent, in contrast to the in vivo situation, Hsp70 together with the two effector proteins Ydj1 and Sti1 exhibits chaperone activity towards luciferase. In the presence of the complete chaperone system, Hsp90 exhibits a specific positive effect only in the presence of Ydj1. If this factor is absent, the transferred luciferase is trapped on Hsp90 in an inactive conformation. Interestingly, identical results were observed for the yeast and the human chaperone systems although the regulatory function of human Hop is completely different from that of yeast Sti1.
热休克蛋白90(Hsp90)是真核细胞胞质溶胶中一种必需的伴侣蛋白。它在由衔接蛋白Hop(酵母中的Sti1)介导的特定复合物中与伴侣蛋白Hsp70协同作用。这些Hsp70/Hsp90伴侣复合物在真核生物关键调节蛋白的折叠和成熟过程中起主要作用。了解在这些复合物中非天然的客户蛋白如何从一种伴侣蛋白转移到另一种伴侣蛋白至关重要。在此,我们以荧光素酶作为底物蛋白分析了该反应的分子机制。我们的实验确定了荧光素酶在Hsp70/Hsp90伴侣系统中折叠的途径。实验表明,Hsp70是未折叠蛋白的有效捕获装置,而Hsp90在该反应中效率不高。与体内情况相反,当不存在Hsp90时,Hsp70与两种效应蛋白Ydj1和Sti1一起对荧光素酶表现出伴侣活性。在完整的伴侣系统存在的情况下,Hsp90仅在Ydj1存在时表现出特定的积极作用。如果该因子不存在,转移的荧光素酶会以无活性的构象被困在Hsp90上。有趣的是,尽管人类Hop的调节功能与酵母Sti1完全不同,但在酵母和人类伴侣系统中观察到了相同的结果。