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通过冷冻电镜断层成像技术对分子伴侣功能进行原位可视化研究。

Visualizing chaperonin function in situ by cryo-electron tomography.

机构信息

Department of Cellular Biochemistry, Max Planck Institute of Biochemistry, Martinsried, Germany.

Research Group Molecular Structural Biology, Max Planck Institute of Biochemistry, Martinsried, Germany.

出版信息

Nature. 2024 Sep;633(8029):459-464. doi: 10.1038/s41586-024-07843-w. Epub 2024 Aug 21.

Abstract

Chaperonins are large barrel-shaped complexes that mediate ATP-dependent protein folding. The bacterial chaperonin GroEL forms juxtaposed rings that bind unfolded protein and the lid-shaped cofactor GroES at their apertures. In vitro analyses of the chaperonin reaction have shown that substrate protein folds, unimpaired by aggregation, while transiently encapsulated in the GroEL central cavity by GroES. To determine the functional stoichiometry of GroEL, GroES and client protein in situ, here we visualized chaperonin complexes in their natural cellular environment using cryo-electron tomography. We find that, under various growth conditions, around 55-70% of GroEL binds GroES asymmetrically on one ring, with the remainder populating symmetrical complexes. Bound substrate protein is detected on the free ring of the asymmetrical complex, defining the substrate acceptor state. In situ analysis of GroEL-GroES chambers, validated by high-resolution structures obtained in vitro, showed the presence of encapsulated substrate protein in a folded state before release into the cytosol. Based on a comprehensive quantification and conformational analysis of chaperonin complexes, we propose a GroEL-GroES reaction cycle that consists of linked asymmetrical and symmetrical subreactions mediating protein folding. Our findings illuminate the native conformational and functional chaperonin cycle directly within cells.

摘要

伴侣蛋白是介导 ATP 依赖的蛋白质折叠的大型桶状复合物。细菌伴侣蛋白 GroEL 形成并列的环,在其开口处结合未折叠的蛋白质和盖状辅助因子 GroES。体外伴侣蛋白反应的分析表明,底物蛋白在 GroES 的短暂包裹下折叠,不会聚集。为了确定 GroEL、GroES 和客户蛋白质在原位的功能计量,我们在这里使用冷冻电镜断层扫描在其自然细胞环境中可视化伴侣蛋白复合物。我们发现,在各种生长条件下,大约 55-70%的 GroEL 不对称地结合在一个环上的 GroES,其余的则形成对称的复合物。在不对称复合物的游离环上检测到结合的底物蛋白,定义了底物接受状态。通过体外获得的高分辨率结构对 GroEL-GroES 室的原位分析进行验证,表明在释放到细胞质之前,被包裹的底物蛋白处于折叠状态。基于对伴侣蛋白复合物的全面定量和构象分析,我们提出了一个由连接的不对称和对称亚反应介导的蛋白质折叠的 GroEL-GroES 反应循环。我们的发现直接在细胞内阐明了天然构象和功能伴侣蛋白循环。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cd42/11390479/8a5bb3a45392/41586_2024_7843_Fig1_HTML.jpg

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