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Cellular and Structural Studies of Eukaryotic Cells by Cryo-Electron Tomography

机译:冷冻电子层析成像技术对真核细胞的细胞和结构研究

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The architecture of protein assemblies and their remodeling during physiological processes is fundamental to cells. Therefore, providing high-resolution snapshots of macromolecular complexes in their native environment is of major importance for understanding the molecular biology of the cell. Cellular structural biology by means of cryo-electron tomography (cryo-ET) offers unique insights into cellular processes at an unprecedented resolution. Recent technological advances have enabled the detection of single impinging electrons and improved the contrast of electron microscopic imaging, thereby significantly increasing the sensitivity and resolution. Moreover, various sample preparation approaches have paved the way to observe every part of a eukaryotic cell, and even multicellular specimens, under the electron beam. Imaging of macromolecular machineries at high resolution directly within their native environment is thereby becoming reality. In this review, we discuss several sample preparation and labeling techniques that allow the visualization and identification of macromolecular assemblies in situ, and demonstrate how these methods have been used to study eukaryotic cellular landscapes.
机译:蛋白质组装体的结构及其在生理过程中的重塑对细胞至关重要。因此,在其天然环境中提供大分子复合物的高分辨率快照对于理解细胞的分子生物学至关重要。通过低温电子断层扫描(cryo-ET)进行的细胞结构生物学,以前所未有的分辨率提供了对细胞过程的独特见解。最近的技术进步使得能够检测单个撞击电子并改善了电子显微成像的对比度,从而显着提高了灵敏度和分辨率。此外,各种样品制备方法已经为在电子束下观察真核细胞甚至多细胞标本的每个部分铺平了道路。直接在其本机环境中以高分辨率对大分子机械进行成像已成为现实。在这篇综述中,我们讨论了几种样品制备和标记技术,这些技术可使原位大分子组装物可视化和鉴定,并展示了如何使用这些方法研究真核细胞景观。

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