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伴侣蛋白辅助的蛋白质折叠:不对称和对称GroEL:GroES复合物的相对丰度

Chaperonin-Assisted Protein Folding: Relative Population of Asymmetric and Symmetric GroEL:GroES Complexes.

作者信息

Haldar Shubhasis, Gupta Amit J, Yan Xiao, Miličić Goran, Hartl F Ulrich, Hayer-Hartl Manajit

机构信息

Department of Cellular Biochemistry, Max Planck Institute of Biochemistry, Am Klopferspitz 18, 82152 Martinsried, Germany.

Department of Cellular Biochemistry, Max Planck Institute of Biochemistry, Am Klopferspitz 18, 82152 Martinsried, Germany.

出版信息

J Mol Biol. 2015 Jun 19;427(12):2244-55. doi: 10.1016/j.jmb.2015.04.009. Epub 2015 Apr 23.

Abstract

The chaperonin GroEL, a cylindrical complex consisting of two stacked heptameric rings, and its lid-like cofactor GroES form a nano-cage in which a single polypeptide chain is transiently enclosed and allowed to fold unimpaired by aggregation. GroEL and GroES undergo an ATP-regulated interaction cycle that serves to close and open the folding cage. Recent reports suggest that the presence of non-native substrate protein alters the GroEL/ES reaction by shifting it from asymmetric to symmetric complexes. In the asymmetric reaction mode, only one ring of GroEL is GroES bound and the two rings function sequentially, coupled by negative allostery. In the symmetric mode, both GroEL rings are GroES bound and are folding active simultaneously. Here, we find that the results of assays based on fluorescence resonance energy transfer recently used to quantify symmetric complexes depend strongly on the fluorophore pair used. We therefore developed a novel assay based on fluorescence cross-correlation spectroscopy to accurately measure GroEL:GroES stoichiometry. This assay avoids fluorophore labeling of GroEL and the use of GroEL cysteine mutants. Our results show that symmetric GroEL:GroES2 complexes are substantially populated only in the presence of non-foldable model proteins, such as α-lactalbumin and α-casein, which "over-stimulate" the GroEL ATPase and uncouple the negative GroEL inter-ring allostery. In contrast, asymmetric complexes are dominant both in the absence of substrate and in the presence of foldable substrate proteins. Moreover, uncoupling of the GroEL rings and formation of symmetric GroEL:GroES2 complexes is suppressed at physiological ATP:ADP concentration. We conclude that the asymmetric GroEL:GroES complex represents the main folding active form of the chaperonin.

摘要

伴侣蛋白GroEL是一种由两个堆叠的七聚体环组成的圆柱形复合物,其盖子状辅因子GroES形成一个纳米笼,单个多肽链在其中被短暂包裹,并能不受聚集影响地进行折叠。GroEL和GroES经历一个由ATP调节的相互作用循环,该循环用于关闭和打开折叠笼。最近的报道表明,非天然底物蛋白的存在会通过将GroEL/ES反应从不对称复合物转变为对称复合物来改变该反应。在不对称反应模式中,只有GroEL的一个环与GroES结合,两个环通过负别构效应依次发挥作用。在对称模式中,GroEL的两个环都与GroES结合并同时具有折叠活性。在这里,我们发现最近用于量化对称复合物的基于荧光共振能量转移的测定结果强烈依赖于所使用的荧光团对。因此,我们开发了一种基于荧光互相关光谱的新型测定方法,以准确测量GroEL:GroES的化学计量比。该测定方法避免了对GroEL进行荧光团标记以及使用GroEL半胱氨酸突变体。我们的结果表明,只有在存在不可折叠的模型蛋白(如α-乳白蛋白和α-酪蛋白)时,对称的GroEL:GroES2复合物才会大量存在,这些蛋白“过度刺激”GroEL ATP酶并解除GroEL环间的负别构效应。相比之下,在没有底物以及存在可折叠底物蛋白的情况下,不对称复合物占主导地位。此外,在生理ATP:ADP浓度下,GroEL环的解偶联以及对称GroEL:GroES2复合物的形成受到抑制。我们得出结论,不对称的GroEL:GroES复合物代表了伴侣蛋白的主要折叠活性形式。

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