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通过核磁共振波谱法探测高分子量 αB-晶体蛋白热休克蛋白聚集体的动态构象。

Probing dynamic conformations of the high-molecular-weight αB-crystallin heat shock protein ensemble by NMR spectroscopy.

机构信息

Department of Molecular Genetics, The University of Toronto, Toronto, Ontario M5S 1A8, Canada.

出版信息

J Am Chem Soc. 2012 Sep 19;134(37):15343-50. doi: 10.1021/ja307874r. Epub 2012 Sep 7.

DOI:10.1021/ja307874r
PMID:22916679
Abstract

Solution- and solid-state nuclear magnetic resonance (NMR) spectroscopy are highly complementary techniques for studying supra-molecular structure. Here they are employed for investigating the molecular chaperone αB-crystallin, a polydisperse ensemble of between 10 and 40 identical subunits with an average molecular mass of approximately 600 kDa. An IxI motif in the C-terminal region of each of the subunits is thought to play a critical role in regulating the size distribution of oligomers and in controlling the kinetics of subunit exchange between them. Previously published solid-state NMR and X-ray results are consistent with a bound IxI conformation, while solution NMR studies provide strong support for a highly dynamic state. Here we demonstrate through FROSTY (freezing rotational diffusion of protein solutions at low temperature and high viscosity) MAS (magic angle spinning) NMR that both populations are present at low temperatures (<0 °C), while at higher temperatures only the mobile state is observed. Solution NMR relaxation dispersion experiments performed under physiologically relevant conditions establish that the motif interchanges between flexible (highly populated) and bound (sparsely populated) states. This work emphasizes the importance of using multiple methods in studies of supra-molecules, especially for highly dynamic ensembles where sample conditions can potentially affect the conformational properties observed.

摘要

溶液和固态核磁共振(NMR)光谱是研究超分子结构的高度互补技术。在这里,它们被用于研究分子伴侣αB-晶体蛋白,这是一个由 10 到 40 个相同亚基组成的多分散体,平均分子量约为 600 kDa。每个亚基 C 末端区域的 IxI 基序被认为在调节寡聚物的尺寸分布以及控制它们之间的亚基交换动力学方面起着关键作用。以前发表的固态 NMR 和 X 射线结果与结合的 IxI 构象一致,而溶液 NMR 研究为高度动态状态提供了强有力的支持。在这里,我们通过 FROSTY(在低温和高粘度下冷冻蛋白质溶液的旋转扩散)MAS(魔角旋转)NMR 证明,两种状态都存在于低温(<0°C)下,而在较高温度下仅观察到可移动状态。在生理相关条件下进行的溶液 NMR 弛豫分散实验确定,该基序在柔性(高丰度)和结合(稀疏丰度)状态之间进行交换。这项工作强调了在超分子研究中使用多种方法的重要性,特别是对于高度动态的体系,其中样品条件可能会影响观察到的构象特性。

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