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Visualizing ubiquitination in mammalian cells

机译:在哺乳动物细胞中可视化泛素化

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摘要

Covalent modification of proteins with ubiquitin is essential for the majority of biological processes in mammalian cells. Numerous proteins are conjugated with single or multiple ubiquitin molecules or chains in a dynamic fashion, often determining protein half-lives, localization or function. Experimental approaches to study ubiquitination have been dominated by genetic and biochemical analysis of enzyme structure-function relationships, reaction mechanisms and physiological relevance. Here, we provide an overview of recent developments in microscopy-based imaging of ubiquitination, available reagents and technologies. We discuss the progress in direct and indirect imaging of differentially linked ubiquitin chains in fixed and living cells using confocal fluorescence microscopy and super-resolution microscopy, illustrated by the role of ubiquitin in antibacterial autophagy and pro-inflammatory signalling. Finally, we speculate on future developments and forecast a transition from qualitative to quantitative super-resolution approaches to understand fundamental aspects of ubiquitination and the formation and distribution of functional E3 ligase protein complexes in their native environment.
机译:用泛素的蛋白质的共价修饰对于哺乳动物细胞的大多数生物过程至关重要。许多蛋白质以动态的方式与单一或多个泛素分子或链缀合,通常确定蛋白质半衰期,定位或功能。研究泛素化的实验方法是酶结构 - 功能关系,反应机制和生理相关性的遗传和生化分析。在这里,我们概述了近期透视,可用试剂和技术的显微镜显微成像的发展。我们讨论了使用共聚焦荧光显微镜和超分辨率显微镜在固定和活细胞中差异链接泛素链的直接和间接成像的进展,通过泛素在抗菌性自噬和促炎信号传导中的作用所示。最后,我们推测了未来的发展和预测从定性到定量超分辨率方法的过渡,了解泛素化的基本方面以及在原生环境中的功能E3连接酶蛋白复合物的形成和分布。

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