*Department of Structural Biology, Max Planck Institute of Biophysics, Max-von-Laue Strasse 3, 60438 Frankfurt am Main, Germany.
Biochem Soc Trans. 2013 Oct;41(5):1227-34. doi: 10.1042/BST20130029.
To truly understand bioenergetic processes such as ATP synthesis, membrane-bound substrate transport or flagellar rotation, systems need to be analysed in a cellular context. Cryo-ET (cryo-electron tomography) is an essential part of this process, as it is currently the only technique which can directly determine the spatial organization of proteins at the level of both the cell and the individual protein complexes. The need to assess bioenergetic processes at a cellular level is becoming more and more apparent with the increasing interest in mitochondrial diseases. In recent years, cryo-ET has contributed significantly to our understanding of the molecular organization of mitochondria and chloroplasts. The present mini-review first describes the technique of cryo-ET and then discusses its role in membrane bioenergetics specifically in chloroplasts and mitochondrial research.
要真正了解生物能量过程,如 ATP 合成、膜结合底物运输或鞭毛旋转,就需要在细胞环境中对系统进行分析。低温电子断层扫描(cryo-electron tomography, cryo-ET)是这个过程的一个重要组成部分,因为它是目前唯一可以直接确定细胞水平和单个蛋白质复合物水平的蛋白质空间组织的技术。随着人们对线粒体疾病越来越感兴趣,评估细胞水平的生物能量过程的需求变得越来越明显。近年来,低温电子断层扫描技术极大地促进了我们对线粒体和叶绿体的分子组织的理解。本综述首先描述了低温电子断层扫描技术,然后讨论了它在膜生物能量学中的作用,特别是在叶绿体和线粒体研究中的作用。