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来自大肠杆菌的伴侣蛋白SecB通过与其配体的动态平衡介导动力学分配。

Chaperone SecB from Escherichia coli mediates kinetic partitioning via a dynamic equilibrium with its ligands.

作者信息

Topping T B, Randall L L

机构信息

Department of Biochemistry and Biophysics, Washington State University, Pullman, Washington 99164-4660, USA.

出版信息

J Biol Chem. 1997 Aug 1;272(31):19314-8. doi: 10.1074/jbc.272.31.19314.

Abstract

We have shown that the complexes between SecB, a chaperone from Escherichia coli, and two physiological ligands, galactose-binding protein and maltose-binding protein, are in rapid, dynamic equilibrium between the bound and free states. Binding to SecB is readily reversible, and each time the ligand is released it undergoes a kinetic partitioning between folding to its native state and re-binding to SecB. Binding requires that the polypeptide be devoid of tertiary structure; once the protein has folded, it is no longer a ligand. Conditions were established in which folding of the polypeptides was sufficiently slow so that at each cycle of dissociation rebinding was favored over folding and a kinetically stable complex between SecB and each polypeptide ligand was observed. Evidence that the ligand is continually released to the bulk solution and rebound was obtained by altering the conditions to increase the rate of folding of each ligand so that folding of the ligand was faster than reassociation with SecB thereby allowing the system to partition to free SecB and folded polypeptide ligand. We conclude that complexes between the chaperone SecB and ligands are in dynamic, rapid equilibrium with the free states. This mode of binding is simpler than that documented for chaperones that function to facilitate folding such as the Hsp70s and Hsp60s, where hydrolysis of ATP is coupled to the binding and release of ligands. This difference may reflect the fact that SecB does not mediate folding but is specialized to facilitate protein export. Without a requirement for exogenous energy it efficiently performs its sole duty: to keep proteins in a nonnative conformation and thus competent for export.

摘要

我们已经证明,来自大肠杆菌的伴侣蛋白SecB与两种生理配体——半乳糖结合蛋白和麦芽糖结合蛋白之间的复合物,在结合态和游离态之间处于快速的动态平衡。与SecB的结合很容易逆转,并且每次配体释放时,它都会在折叠成天然状态和重新结合到SecB之间进行动力学分配。结合要求多肽没有三级结构;一旦蛋白质折叠,它就不再是配体。建立了这样的条件,即多肽的折叠足够缓慢,以至于在每个解离循环中,重新结合比折叠更受青睐,并且观察到SecB与每个多肽配体之间形成了动力学稳定的复合物。通过改变条件以提高每个配体的折叠速率,从而使配体的折叠速度快于与SecB的重新结合,从而使系统分配到游离的SecB和折叠的多肽配体,获得了配体不断释放到本体溶液中并重新结合的证据。我们得出结论,伴侣蛋白SecB与配体之间的复合物与游离态处于动态、快速平衡。这种结合模式比那些促进折叠的伴侣蛋白(如Hsp70和Hsp60)所记录的模式更简单,在Hsp70和Hsp60中,ATP的水解与配体的结合和释放相偶联。这种差异可能反映了这样一个事实,即SecB不介导折叠,而是专门促进蛋白质输出。无需外源能量,它就能有效地履行其唯一职责:使蛋白质保持非天然构象,从而能够进行输出。

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