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通过冷冻电镜图谱的网络分析揭示伴侣蛋白 TRiC/CCT 表现出的构象依赖的顺序变构

State-dependent sequential allostery exhibited by chaperonin TRiC/CCT revealed by network analysis of Cryo-EM maps.

机构信息

Department of Computational and Systems Biology, University of Pittsburgh, 800 Murdoch Building, 3420 Forbes Avenue, Pittsburgh, PA, 15261, USA.

Centro Nacional de Biotecnología (CSIC), Darwin, 3, 28049, Madrid, Spain.

出版信息

Prog Biophys Mol Biol. 2021 Mar;160:104-120. doi: 10.1016/j.pbiomolbio.2020.08.006. Epub 2020 Aug 28.

Abstract

The eukaryotic chaperonin TRiC/CCT plays a major role in assisting the folding of many proteins through an ATP-driven allosteric cycle. Recent structures elucidated by cryo-electron microscopy provide a broad view of the conformations visited at various stages of the chaperonin cycle, including a sequential activation of its subunits in response to nucleotide binding. But we lack a thorough mechanistic understanding of the structure-based dynamics and communication properties that underlie the TRiC/CCT machinery. In this study, we present a computational methodology based on elastic network models adapted to cryo-EM density maps to gain a deeper understanding of the structure-encoded allosteric dynamics of this hexadecameric machine. We have analysed several structures of the chaperonin resolved in different states toward mapping its conformational landscape. Our study indicates that the overall architecture intrinsically favours cooperative movements that comply with the structural variabilities observed in experiments. Furthermore, the individual subunits CCT1-CCT8 exhibit state-dependent sequential events at different states of the allosteric cycle. For example, in the ATP-bound state, subunits CCT5 and CCT4 selectively initiate the lid closure motions favoured by the overall architecture; whereas in the apo form of the heteromer, the subunit CCT7 exhibits the highest predisposition to structural change. The changes then propagate through parallel fluxes of allosteric signals to neighbours on both rings. The predicted state-dependent mechanisms of sequential activation provide new insights into TRiC/CCT intra- and inter-ring signal transduction events.

摘要

真核伴侣蛋白 TRiC/CCT 在协助许多蛋白质折叠方面发挥着重要作用,其通过一个 ATP 驱动的变构循环来实现。最近通过低温电子显微镜解析的结构为该伴侣蛋白在变构循环的各个阶段所经历的构象提供了一个广泛的视角,包括其亚基对核苷酸结合的顺序激活。但是,我们缺乏对基础 TRiC/CCT 机制的结构相关动力学和通信特性的透彻理解。在这项研究中,我们提出了一种基于弹性网络模型的计算方法,该方法适用于低温电子显微镜密度图,以深入了解这种十六聚体机器的结构编码变构动力学。我们分析了几种不同状态下的伴侣蛋白结构,以绘制其构象景观图。我们的研究表明,整体结构本质上有利于符合实验中观察到的结构可变性的协同运动。此外,个体亚基 CCT1-CCT8 在变构循环的不同状态下表现出依赖于状态的顺序事件。例如,在 ATP 结合状态下,亚基 CCT5 和 CCT4 选择性地启动整体结构所支持的盖子关闭运动;而在同聚物的无配体形式中,亚基 CCT7 表现出最高的结构变化倾向。然后,这些变化通过变构信号的平行流在两个环上的相邻部分传播。预测的依赖于状态的顺序激活机制为 TRiC/CCT 内部和环间信号转导事件提供了新的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/69b9/7914283/621cb9d71702/nihms-1628789-f0001.jpg

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