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发育毒理学中的蛋白质组学

Proteomics in developmental toxicology.

作者信息

Barrier Marianne, Mirkes Philip E

机构信息

Birth Defects Research Laboratory, Division of Genetics and Developmental Medicine, Department of Pediatrics, University of Washington, Box 356320, 1959 NE Pacific Street, Seattle, WA 98195, USA.

出版信息

Reprod Toxicol. 2005 Jan-Feb;19(3):291-304. doi: 10.1016/j.reprotox.2004.09.001.

Abstract

The objective of this presentation is to review the major proteomic technologies available to developmental toxicologists and, when possible, to provide examples of how various proteomic technologies have been used in developmental toxicology or toxicology in general. The field of proteomics is too broad for us to go into great depth about each technology, so we have attempted to provide brief overviews supplemented with many references that cover the subjects in more detail. Proteomics tools produce a global view of complex biological systems by examining complex protein mixtures using large-scale, high-throughput technologies. These technologies speed up the process of protein separation, quantification, and identification. As an important complement to genomics, proteomics allows for the examination of the entire complement of proteins in an organism, tissue, or cell-type. Current proteomics technologies not only identify protein expression, but also post-translational modifications and protein interactions. The field of proteomics is expanding rapidly to provide greater volume and quality of protein information to help understand the multifaceted nature of biological systems.

摘要

本报告的目的是回顾发育毒理学家可用的主要蛋白质组学技术,并尽可能举例说明各种蛋白质组学技术如何应用于发育毒理学或一般毒理学。蛋白质组学领域过于宽泛,我们无法对每种技术进行深入探讨,因此我们试图提供简要概述,并补充许多更详细涵盖这些主题的参考文献。蛋白质组学工具通过使用大规模、高通量技术检查复杂的蛋白质混合物,从而对复杂的生物系统形成全局观。这些技术加快了蛋白质分离、定量和鉴定的过程。作为基因组学的重要补充,蛋白质组学能够检测生物体、组织或细胞类型中的全部蛋白质。当前的蛋白质组学技术不仅能识别蛋白质表达,还能检测翻译后修饰和蛋白质相互作用。蛋白质组学领域正在迅速扩展,以提供更多数量和更高质量的蛋白质信息,帮助理解生物系统的多面性。

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