Wetmore Barbara A, Merrick B Alex
National Center for Toxicogenomics, National Institute of Environmental Health Sciences, Research Triangle Park, North Caroline 27709, USA.
Toxicol Pathol. 2004 Nov-Dec;32(6):619-42. doi: 10.1080/01926230490518244.
Global measurement of proteins and their many attributes in tissues and biofluids defines the field of proteomics. Toxicoproteomics, as part of the larger field of toxicogenomics. seeks to identify critical proteins and pathways in biological systems that are affected by and respond to adverse chemical and environmental exposures using global protein expression technologies. Toxicoproteomics integrates 3 disciplinary areas: traditional toxicology and pathology, differential protein and gene expression analysis, and systems biology. Key topics to be reviewed are the evolution of proteomics, proteomic technology platforms and their capabilities with exemplary studies from biology and medicine, a review of over 50 recent studies applying proteomic analysis to toxicological research, and the recent development of databases designed to integrate -Omics technologies with toxicology and pathology. Proteomics is examined for its potential in discovery of new biomarkers and toxicity signatures, in mapping serum,plasma. and other biofluid proteomes, and in parallel proteomic and transcriptomic studies. The new field of toxicoproteomics is uniquely positioned toward an expanded understanding of protein expression during toxicity and environmental disease for the advancement of public health.
对组织和生物流体中的蛋白质及其众多属性进行全面测量,界定了蛋白质组学领域。作为更大的毒理基因组学领域的一部分,毒理蛋白质组学旨在利用全球蛋白质表达技术,识别生物系统中受不良化学和环境暴露影响并对其作出反应的关键蛋白质和通路。毒理蛋白质组学整合了三个学科领域:传统毒理学和病理学、差异蛋白质和基因表达分析以及系统生物学。将回顾的关键主题包括蛋白质组学的发展历程、蛋白质组学技术平台及其能力,并结合来自生物学和医学的典型研究;对50多项近期将蛋白质组学分析应用于毒理学研究的研究进行综述;以及旨在将组学技术与毒理学和病理学整合的数据库的最新发展。探讨了蛋白质组学在发现新生物标志物和毒性特征、绘制血清、血浆及其他生物流体蛋白质组图谱以及并行蛋白质组学和转录组学研究方面的潜力。毒理蛋白质组学这一新领域在增进对毒性和环境疾病期间蛋白质表达的理解以促进公共卫生方面具有独特的地位。