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伴侣蛋白ATP酶循环的动力学:对促进蛋白质折叠的影响。

Dynamics of the chaperonin ATPase cycle: implications for facilitated protein folding.

作者信息

Todd M J, Viitanen P V, Lorimer G H

机构信息

E. I. DuPont de Nemours and Company, Central Research and Development Department, Wilmington, DE 19880.

出版信息

Science. 1994 Jul 29;265(5172):659-66. doi: 10.1126/science.7913555.

Abstract

The Escherichia coli chaperonins GroEL and GroES facilitate protein folding in an adenosine triphosphate (ATP)-dependent manner. After a single cycle of ATP hydrolysis by the adenosine triphosphatase (ATPase) activity of GroEL, the bi-toroidal GroEL formed a stable asymmetric ternary complex with GroES and nucleotide (bulletlike structures). With each subsequent turnover, ATP was hydrolyzed by one ring of GroEL in a quantized manner, completely releasing the adenosine diphosphate and GroES that were tightly bound to the other ring as a result of the previous turnover. The catalytic cycle involved formation of a symmetric complex (football-like structures) as an intermediate that accumulated before the rate-determining hydrolytic step. After one to two cycles, most of the substrate protein dissociated still in a nonnative state, which is consistent with intermolecular transfer of the substrate protein between toroids of high and low affinity. A unifying model for chaperonin-facilitated protein folding based on successive rounds of binding and release, and partitioning between committed and kinetically trapped intermediates, is proposed.

摘要

大肠杆菌伴侣蛋白GroEL和GroES以三磷酸腺苷(ATP)依赖的方式促进蛋白质折叠。在GroEL的腺苷三磷酸酶(ATPase)活性进行一轮ATP水解后,双环的GroEL与GroES和核苷酸形成稳定的不对称三元复合物(子弹状结构)。在随后的每次周转中,ATP以量化方式被GroEL的一个环水解,完全释放出由于上一次周转而紧密结合在另一个环上的二磷酸腺苷和GroES。催化循环涉及形成对称复合物(足球状结构)作为中间体,该中间体在限速水解步骤之前积累。经过一到两个循环后,大多数底物蛋白仍以非天然状态解离,这与底物蛋白在高亲和力和低亲和力环之间的分子间转移一致。提出了一个基于连续几轮结合和释放以及在特定中间体和动力学捕获中间体之间分配的伴侣蛋白促进蛋白质折叠的统一模型。

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