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获取完整的人类蛋白质组。

Obtaining Complete Human Proteomes.

机构信息

Novo Nordisk Foundation Center for Protein Research, Proteomics Program, Faculty of Health and Medical Sciences, University of Copenhagen, Copenhagen, Denmark; email:

出版信息

Annu Rev Genomics Hum Genet. 2022 Aug 31;23:99-121. doi: 10.1146/annurev-genom-112921-024948. Epub 2022 Apr 19.

Abstract

Proteins are the molecular effectors of the information encoded in the genome. Proteomics aims at understanding the molecular functions of proteins in their biological context. In contrast to transcriptomics and genomics, the study of proteomes provides deeper insight into the dynamic regulatory layers encoded at the protein level, such as posttranslational modifications, subcellular localization, cell signaling, and protein-protein interactions. Currently, mass spectrometry (MS)-based proteomics is the technology of choice for studying proteomes at a system-wide scale, contributing to clinical biomarker discovery and fundamental molecular biology. MS technologies are continuously being developed to fulfill the requirements of speed, resolution, and quantitative accuracy, enabling the acquisition of comprehensive proteomes. In this review, we present how MS technology and acquisition methods have evolved to meet the requirements of cutting-edge proteomics research, which is describing the human proteome and its dynamic posttranslational modifications with unprecedented depth. Finally, we provide a perspective on studying proteomes at single-cell resolution.

摘要

蛋白质是基因组中编码信息的分子效应物。蛋白质组学旨在理解蛋白质在其生物背景下的分子功能。与转录组学和基因组学相比,蛋白质组的研究更深入地揭示了在蛋白质水平上编码的动态调控层,如翻译后修饰、亚细胞定位、细胞信号转导和蛋白质-蛋白质相互作用。目前,基于质谱(MS)的蛋白质组学是研究全系统蛋白质组的首选技术,有助于临床生物标志物的发现和基础分子生物学。MS 技术不断发展,以满足速度、分辨率和定量准确性的要求,从而实现全面蛋白质组的获取。在这篇综述中,我们介绍了 MS 技术和采集方法是如何发展以满足前沿蛋白质组学研究的要求的,这些研究正在以前所未有的深度描述人类蛋白质组及其动态翻译后修饰。最后,我们对在单细胞分辨率下研究蛋白质组提供了一个视角。

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