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Proteogenomics: Integrating Next-Generation Sequencing and Mass Spectrometry to Characterize Human Proteomic Variation
Annual Review of Analytical Chemistry ( IF 5.9 ) Pub Date : 2016-06-15 00:00:00 , DOI: 10.1146/annurev-anchem-071015-041722
Gloria M Sheynkman 1, 2, 3 , Michael R Shortreed 3 , Anthony J Cesnik 3 , Lloyd M Smith 3, 4
Affiliation  

Mass spectrometry–based proteomics has emerged as the leading method for detection, quantification, and characterization of proteins. Nearly all proteomic workflows rely on proteomic databases to identify peptides and proteins, but these databases typically contain a generic set of proteins that lack variations unique to a given sample, precluding their detection. Fortunately, proteogenomics enables the detection of such proteomic variations and can be defined, broadly, as the use of nucleotide sequences to generate candidate protein sequences for mass spectrometry database searching. Proteogenomics is experiencing heightened significance due to two developments: (a) advances in DNA sequencing technologies that have made complete sequencing of human genomes and transcriptomes routine, and (b) the unveiling of the tremendous complexity of the human proteome as expressed at the levels of genes, cells, tissues, individuals, and populations. We review here the field of human proteogenomics, with an emphasis on its history, current implementations, the types of proteomic variations it reveals, and several important applications.

中文翻译:



蛋白质基因组学:整合下一代测序和质谱分析来表征人类蛋白质组变异



基于质谱的蛋白质组学已成为蛋白质检测、定量和表征的主要方法。几乎所有蛋白质组工作流程都依赖蛋白质组数据库来识别肽和蛋白质,但这些数据库通常包含一组通用蛋白质,这些蛋白质缺乏给定样品特有的变异,从而妨碍了它们的检测。幸运的是,蛋白质基因组学能够检测此类蛋白质组变异,并且可以广泛地定义为使用核苷酸序列来生成用于质谱数据库搜索的候选蛋白质序列。由于两项发展,蛋白质基因组学的重要性日益凸显:( a ) DNA 测序技术的进步,使人类基因组和转录组的完整测序成为常规;( b ) 揭示了人类蛋白质组的巨大复杂性,其表达水平为基因、细胞、组织、个体和群体。我们在此回顾人类蛋白质组学领域,重点介绍其历史、当前的实施、它揭示的蛋白质组变异的类型以及几个重要的应用。

更新日期:2016-06-15
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