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冷冻电子断层扫描揭示的线粒体ATP合酶的结构动力学。

Structural dynamics of mitochondrial ATP synthase in revealed by CryoET.

作者信息

Capper Emily, Chen Muyuan

机构信息

Division of CryoEM and Bioimaging, SSRL, SLAC National Accelerator Laboratory, Stanford University, Menlo Park, CA 94025, USA.

College of Arts, Sciences, and Engineering, University of Rochester, Rochester, NY 14627, USA.

出版信息

bioRxiv. 2025 Sep 16:2025.09.10.674987. doi: 10.1101/2025.09.10.674987.

Abstract

The turbine dynamics of mitochondrial ATP synthases is an unresolved topic which cryo-ET is poised to answer. Using publicly available tomogram data of vitrified cells, a monomer map of ATP synthase was refined to 6.67Å. With extensive heterogeneity analysis, we characterized the conformation states of F1 head, central stalk, and upper peripheral stalk (UPS) individually, and analyzed the by-particle correlation between movement of the different domains, revealing the complex dynamics of the system within cells. While oligomycin sensitivity conferral protein (OSCP) and the UPS were found to bend with F1 head rotation, coupling between the rotation of central stalk and F1 head rotational states, suggested by previous studies, were not detected from ATP synthase inside mitochondria.

摘要

线粒体ATP合酶的涡轮动力学是一个尚未解决的课题,冷冻电镜有望给出答案。利用公开可得的玻璃化细胞断层扫描数据,将ATP合酶的单体图谱分辨率提高到了6.67埃。通过广泛的异质性分析,我们分别表征了F1头部、中央轴和上部外周轴(UPS)的构象状态,并分析了不同结构域运动之间的逐颗粒相关性,揭示了细胞内该系统的复杂动力学。虽然发现寡霉素敏感性赋予蛋白(OSCP)和UPS会随着F1头部的旋转而弯曲,但先前研究表明的中央轴旋转与F1头部旋转状态之间的耦合,在线粒体内的ATP合酶中未被检测到。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1ee2/12458427/5d349b60798d/nihpp-2025.09.10.674987v1-f0001.jpg

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