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用于快速研究细胞动态的基因编码成像工具。

Genetically encoded imaging tools for investigating cell dynamics at a glance.

作者信息

Sittewelle Méghane, Ferrandiz Nuria, Fesenko Mary, Royle Stephen J

机构信息

Centre for Mechanochemical Cell Biology, Division of Biomedical Sciences, Warwick Medical School, University of Warwick, Coventry CV4 7AL, UK.

出版信息

J Cell Sci. 2023 Apr 1;136(7). doi: 10.1242/jcs.260783. Epub 2023 Apr 11.

Abstract

The biology of a cell is the sum of many highly dynamic processes, each orchestrated by a plethora of proteins and other molecules. Microscopy is an invaluable approach to spatially and temporally dissect the molecular details of these processes. Hundreds of genetically encoded imaging tools have been developed that allow cell scientists to determine the function of a protein of interest in the context of these dynamic processes. Broadly, these tools fall into three strategies: observation, inhibition and activation. Using examples for each strategy, in this Cell Science at a Glance and the accompanying poster, we provide a guide to using these tools to dissect protein function in a given cellular process. Our focus here is on tools that allow rapid modification of proteins of interest and how observing the resulting changes in cell states is key to unlocking dynamic cell processes. The aim is to inspire the reader's next set of imaging experiments.

摘要

细胞生物学是众多高度动态过程的总和,每个过程都由大量蛋白质和其他分子精心编排。显微镜检查是一种在空间和时间上剖析这些过程分子细节的宝贵方法。已经开发了数百种基因编码成像工具,使细胞科学家能够在这些动态过程的背景下确定感兴趣蛋白质的功能。广泛地说,这些工具可分为三种策略:观察、抑制和激活。在本《细胞科学一览》及随附的海报中,我们通过每种策略的示例,提供了一份使用这些工具剖析特定细胞过程中蛋白质功能的指南。我们这里关注的是能够快速修饰感兴趣蛋白质的工具,以及观察细胞状态由此产生的变化如何成为解锁动态细胞过程的关键。目的是激发读者的下一组成像实验。

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