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伴随肽与内质网热休克蛋白90伴侣蛋白GRP94结合激活的结构转变。

Structural transitions accompanying the activation of peptide binding to the endoplasmic reticulum Hsp90 chaperone GRP94.

作者信息

Wearsch P A, Voglino L, Nicchitta C V

机构信息

Department of Cell Biology, Duke University Medical Center, Durham, North Carolina 27710, USA.

出版信息

Biochemistry. 1998 Apr 21;37(16):5709-19. doi: 10.1021/bi9801006.

Abstract

GRP94, the endoplasmic reticulum Hsp90 paralog, binds a diverse array of peptides, a subset of which are suitable for assembly onto nascent MHC class I molecules. At present, the mechanism, site, and regulation of peptide binding to GRP94 are unknown. Using VSV8, the immunodominant peptide epitope of the vesicular stomatitis virus, and native, purified GRP94, we have investigated GRP94-peptide complex formation. The formation of stable GRP94-VSV8 complexes was slow; competition studies demonstrated that peptide binding to GRP94 was specific. VSV8 binding to GRP94 was stimulated 2-fold or 4-fold, respectively, following chemical denaturation/renaturation or transient heat shock. The activation of GRP94-peptide binding occurred coincident with a stable, tertiary conformational change, as identified by tryptophan fluorescence and proteolysis studies. Analysis of GRP94 secondary structure by circular dichroism spectroscopy indicated an identical alpha-helical content for the native, chemically denatured/renatured, and heat-shocked forms of GRP94. Through use of the environment-sensitive fluorophores acrylodan and Nile Red, it was observed that the activation of peptide binding was accompanied by enhanced peptide and solvent accessibility to a hydrophobic binding site(s). Peptide binding to native or activated GRP94 was identical in the presence or absence of ATP or ADP. These results are discussed with respect to a model in which peptide binding to GRP94 occurs within a hydrophobic binding pocket whose accessibility is conformationally regulated in an adenine nucleotide-independent manner.

摘要

GRP94是内质网Hsp90旁系同源物,能结合多种肽段,其中一部分适合组装到新生的MHC I类分子上。目前,肽段与GRP94结合的机制、位点和调控尚不清楚。利用水泡性口炎病毒的免疫显性肽表位VSV8以及天然纯化的GRP94,我们研究了GRP94-肽复合物的形成。稳定的GRP94-VSV8复合物形成缓慢;竞争研究表明肽段与GRP94的结合具有特异性。化学变性/复性或短暂热休克后,VSV8与GRP94的结合分别增强了2倍或4倍。GRP94-肽结合的激活与稳定的三级构象变化同时发生,这通过色氨酸荧光和蛋白水解研究得以确定。通过圆二色光谱分析GRP94二级结构表明,天然、化学变性/复性和热休克形式的GRP94具有相同的α-螺旋含量。通过使用对环境敏感的荧光团丙烯罗丹明和尼罗红,观察到肽结合的激活伴随着肽段和溶剂对疏水结合位点的可及性增强。在有或没有ATP或ADP的情况下,肽段与天然或激活的GRP94的结合相同。我们将这些结果与一个模型进行了讨论,在该模型中,肽段与GRP94的结合发生在一个疏水结合口袋内,其可及性以不依赖腺嘌呤核苷酸的方式受到构象调控。

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