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溶液中的70 kDa热休克蛋白伴侣核苷酸结合结构域展现为一种能够重新定向其功能亚结构域的分子机器。

The 70-kDa heat shock protein chaperone nucleotide-binding domain in solution unveiled as a molecular machine that can reorient its functional subdomains.

作者信息

Zhang Yongbo, Zuiderweg Erik R P

机构信息

Biophysics Research Division and Departments of Biological Chemistry and Chemistry, University of Michigan, 930 North University Avenue, Ann Arbor, MI 48109, USA.

出版信息

Proc Natl Acad Sci U S A. 2004 Jul 13;101(28):10272-7. doi: 10.1073/pnas.0401313101. Epub 2004 Jul 1.

Abstract

The 70-kDa heat shock cognate (Hsc70) chaperone plays a crucial role in protein (re-)folding and triage in the mammalian cytosol. Here we study, by NMR, the 44-kDa nucleotide-binding domain (NBD) of this molecule, which allosterically regulates, by binding either ADP or ATP in a cleft between the two main lobes, the chaperoning affinity of the attached substrate-binding domain. The NBD is also a center of interaction with cochaperones that couple into the allostery. By measuring residual dipolar couplings by NMR, we show that the orientation of two lobes of the Hsc70 NBD in solution deviates up to 10 degrees from their positions in 14 superimposing x-ray structures. Additional orientational differences of subdomains within the lobes unveil the Hsc70 NBD in solution as a flexible molecular machine that can adjust the relative positions of all of its four subdomains. Because the residues interacting with the nucleotide emanate from all four subdomains, adjustments in subdomain orientation should affect the nucleotide chemistry and vice versa. Our data suggest a hypothesis that cochaperone or substrate domain binding perturbs the relative subdomain orientations, thereby functionally and allosterically coupling to the nucleotide state of the NBD.

摘要

70 kDa热休克同源蛋白(Hsc70)伴侣蛋白在哺乳动物细胞质中的蛋白质(再)折叠和分类过程中发挥着关键作用。在此,我们通过核磁共振(NMR)研究了该分子44 kDa的核苷酸结合结构域(NBD),该结构域通过在两个主要叶之间的裂隙中结合ADP或ATP,变构调节附着的底物结合结构域的伴侣亲和力。NBD也是与参与变构作用的共伴侣相互作用的中心。通过NMR测量剩余偶极耦合,我们发现Hsc70 NBD在溶液中的两个叶的取向与其在14个叠加的X射线结构中的位置偏差高达10度。叶内亚结构域的其他取向差异揭示了溶液中的Hsc70 NBD是一种灵活的分子机器,能够调节其所有四个亚结构域的相对位置。由于与核苷酸相互作用的残基来自所有四个亚结构域,亚结构域取向的调整应会影响核苷酸化学,反之亦然。我们的数据提出了一个假设,即共伴侣或底物结构域的结合会扰乱亚结构域的相对取向,从而在功能和变构上与NBD的核苷酸状态耦合。

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