Department of Immunology, MC 1601, University of Connecticut School of Medicine, Farmington, Connecticut 06030-1601, USA.
J Biol Chem. 2012 Feb 24;287(9):6735-42. doi: 10.1074/jbc.M111.309526. Epub 2012 Jan 5.
The structural basis for molecular chaperones to discern misfolded proteins has long been an enigma. As the endoplasmic reticulum paralogue of the cytosolic HSP90, gp96 (GRP94, HSP90b1) is an essential molecular chaperone for Toll-like receptors (TLRs) and integrins. However, little is known about its client-binding domain (CBD). Herein, we provide genetic and biochemical evidence to definitively demonstrate that a C-terminal loop structure, formed by residues 652-678, is the critical region of CBD for both TLRs and integrins. Deletion of this region affects neither the intrinsic ATPase activity nor the overall conformation of gp96. However, without it, the chaperoning function of gp96 collapses. We also find a critical Met pair (Met(658)-Met(662)) for the folding of integrins but not TLRs. Moreover, we find that the TLR binding to gp96 is also dependent on the C-terminal dimerization domain but not the N-terminal ATP-binding pocket of gp96. Our study has unveiled surprisingly the exquisite specificity of gp96 in substrate binding and suggests a manipulation of its CBD as an alternative strategy for targeted therapy of a variety of diseases.
分子伴侣区分错误折叠蛋白质的结构基础长期以来一直是个谜。内质网与胞质 HSP90 同系物 gp96(GRP94,HSP90b1)是 Toll 样受体(TLRs)和整合素的必需分子伴侣。然而,人们对其客户结合域(CBD)知之甚少。本文提供了遗传和生化证据,明确证明由残基 652-678 形成的 C 末端环结构是 CBD 对 TLRs 和整合素的关键区域。该区域的缺失既不影响固有 ATPase 活性,也不影响 gp96 的整体构象。然而,没有它,gp96 的伴侣功能就会崩溃。我们还发现了一个关键的 Met 对(Met(658)-Met(662)),对整合素的折叠很重要,但对 TLR 不重要。此外,我们发现 TLR 与 gp96 的结合也依赖于 gp96 的 C 末端二聚化结构域,但不依赖于 gp96 的 N 末端 ATP 结合口袋。我们的研究出人意料地揭示了 gp96 在底物结合方面的高度特异性,并提出了操纵其 CBD 的策略,作为针对各种疾病的靶向治疗的替代策略。