Ryabova N A, Marchenkov V V, Marchenkova S Yu, Kotova N V, Semisotnov G V
Institute of Protein Research, Russian Academy of Sciences, Pushchino, Moscow Region, 142290, Russia.
Biochemistry (Mosc). 2013 Dec;78(13):1405-14. doi: 10.1134/S0006297913130038.
Molecular chaperones are a special class of heat shock proteins (Hsp) that assist the folding and formation of the quaternary structure of other proteins both in vivo and in vitro. However, some chaperones are complex oligomeric proteins, and one of the intriguing questions is how the chaperones fold. The representatives of the Escherichia coli chaperone system GroEL (Hsp60) and GroES (Hsp10) have been studied most intensively. GroEL consists of 14 identical subunits combined into two interacting ring-like structures of seven subunits each, while the co-chaperone GroES interacting with GroEL consists of seven identical subunits combined into a dome-like oligomeric structure. In spite of their complex quaternary structure, GroEL and GroES fold well both in vivo and in vitro. However, the specific oligomerization of GroEL subunits is dependent on ligands and external conditions. This review analyzes the literature and our own data on the study of unfolding (denaturation) and refolding (renaturation) processes of these molecular chaperones and the effect of ligands and solvent composition. Such analysis seems to be useful for understanding the folding mechanism not only of the GroEL/GroES complex, but also of other oligomeric protein complexes.
分子伴侣是一类特殊的热休克蛋白(Hsp),它们在体内和体外都能协助其他蛋白质的折叠以及四级结构的形成。然而,一些分子伴侣是复杂的寡聚蛋白,一个有趣的问题是这些分子伴侣是如何折叠的。大肠杆菌分子伴侣系统中的GroEL(Hsp60)和GroES(Hsp10)的代表性成员得到了最为深入的研究。GroEL由14个相同的亚基组成,这些亚基组合成两个相互作用的环状结构,每个环状结构由7个亚基组成,而与GroEL相互作用的共分子伴侣GroES则由7个相同的亚基组成一个圆顶状的寡聚结构。尽管它们具有复杂的四级结构,但GroEL和GroES在体内和体外都能很好地折叠。然而,GroEL亚基的特定寡聚化取决于配体和外部条件。这篇综述分析了有关这些分子伴侣的去折叠(变性)和重折叠(复性)过程以及配体和溶剂组成影响的文献和我们自己的数据。这样的分析似乎不仅有助于理解GroEL/GroES复合物的折叠机制,也有助于理解其他寡聚蛋白复合物的折叠机制。