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保守精氨酸在嗜热栖热菌 ClpB 的 AAA+ 伴侣 ATP 结合域中的作用。

Roles of conserved arginines in ATP-binding domains of AAA+ chaperone ClpB from Thermus thermophilus.

机构信息

Department of Biology, Faculty of Science and Engineering, Konan University, Okamoto, Kobe, Japan.

出版信息

FEBS J. 2011 Jul;278(13):2395-403. doi: 10.1111/j.1742-4658.2011.08167.x. Epub 2011 May 31.

Abstract

ClpB, a member of the expanded superfamily of ATPases associated with diverse cellular activities (AAA+), forms a ring-shaped hexamer and cooperates with the DnaK chaperone system to reactivate aggregated proteins in an ATP-dependent manner. The ClpB protomer consists of an N-terminal domain, an AAA+ module (AAA-1), a middle domain, and a second AAA+ module (AAA-2). Each AAA+ module contains highly conserved WalkerA and WalkerB motifs, and two arginines (AAA-1) or one arginine (AAA-2). Here, we investigated the roles of these arginines (Arg322, Arg323, and Arg747) of ClpB from Thermus thermophilus in the ATPase cycle and chaperone function by alanine substitution. These mutations did not affect nucleotide binding, but did inhibit the hydrolysis of the bound ATP and slow the threading of the denatured protein through the central pore of the T. thermophilus ClpB ring, which severely impaired the chaperone functions. Previously, it was demonstrated that ATP binding to the AAA-1 module induced motion of the middle domain and stabilized the ClpB hexamer. However, the arginine mutations of the AAA-1 module destabilized the ClpB hexamer, even though ATP-induced motion of the middle domain was not affected. These results indicated that the three arginines are crucial for ATP hydrolysis and chaperone activity, but not for ATP binding. In addition, the two arginines in AAA-1 and the ATP-induced motion of the middle domain independently contribute to the stabilization of the hexamer.

摘要

ClpB 是与多种细胞活动相关的 ATP 酶超家族的扩展成员,形成环形六聚体,并与 DnaK 伴侣系统合作,以 ATP 依赖的方式使聚集的蛋白质复性。ClpB 单体由 N 端结构域、AAA+ 模块(AAA-1)、中间结构域和第二个 AAA+ 模块(AAA-2)组成。每个 AAA+ 模块都包含高度保守的 WalkerA 和 WalkerB 基序,以及两个精氨酸(AAA-1)或一个精氨酸(AAA-2)。在这里,我们通过丙氨酸取代研究了来自嗜热栖热菌的 ClpB 中的这些精氨酸(Arg322、Arg323 和 Arg747)在 ATP 酶循环和伴侣功能中的作用。这些突变不影响核苷酸结合,但抑制结合的 ATP 的水解,并减缓变性蛋白通过嗜热栖热菌 ClpB 环中央孔的穿入,这严重损害了伴侣功能。先前已经证明,ATP 结合到 AAA-1 模块会引起中间结构域的运动并稳定 ClpB 六聚体。然而,AAA-1 模块的精氨酸突变会使 ClpB 六聚体不稳定,尽管中间结构域的 ATP 诱导运动没有受到影响。这些结果表明,这三个精氨酸对于 ATP 水解和伴侣活性至关重要,但对于 ATP 结合不重要。此外,AAA-1 中的两个精氨酸和中间结构域的 ATP 诱导运动独立地有助于六聚体的稳定。

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