利用低温电子断层扫描技术为细胞生物学提供结构。

IF 10.4 1区 生物学 Q1 BIOPHYSICS
Lindsey N Young, Elizabeth Villa
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引用次数: 7

摘要

低温电子显微镜的最新进展仅仅标志着这项技术潜力的开始。为了将结构引入细胞生物学,低温电子断层成像技术已迅速发展成为一种真正的原位结构生物学技术,可在细胞的原生环境中确定结构。自从在细胞中开出第一扇窗,揭开近原生条件下大分子网络的面纱以来,低温聚焦离子束辅助电子断层成像(cryo-FIB-ET)工作流程的几乎每一步在过去十年中都得到了改进。低温离子束辅助电子断层扫描(cryo-FIB-ET)是结构生物学和细胞生物学的桥梁,它推动了我们对原生环境中结构-功能关系的理解,并成为发现新生物学的工具。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Bringing Structure to Cell Biology with Cryo-Electron Tomography.

Recent advances in cryo-electron microscopy have marked only the beginning of the potential of this technique. To bring structure into cell biology, the modality of cryo-electron tomography has fast developed into a bona fide in situ structural biology technique where structures are determined in their native environment, the cell. Nearly every step of the cryo-focused ion beam-assisted electron tomography (cryo-FIB-ET) workflow has been improved upon in the past decade, since the first windows were carved into cells, unveiling macromolecular networks in near-native conditions. By bridging structural and cell biology, cryo-FIB-ET is advancing our understanding of structure-function relationships in their native environment and becoming a tool for discovering new biology.

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来源期刊
Annual Review of Biophysics
Annual Review of Biophysics 生物-生物物理
CiteScore
21.00
自引率
0.00%
发文量
25
期刊介绍: The Annual Review of Biophysics, in publication since 1972, covers significant developments in the field of biophysics, including macromolecular structure, function and dynamics, theoretical and computational biophysics, molecular biophysics of the cell, physical systems biology, membrane biophysics, biotechnology, nanotechnology, and emerging techniques.
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