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Precise and parallel characterization of coding polymorphisms, alternative splicing, and modifications in human proteins by mass spectrometry

机译:通过质谱对人类蛋白质中编码多态性,选择性剪接和修饰的精确和并行表征

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摘要

The human proteome is a highly complex extension of the genome wherein a single gene often produces distinct protein forms due to alternative splicing, RNA editing, polymorphisms, and posttranslational modifications. Such biological variation compounded by the high sequence identity within gene families currently overwhelms the complete and routine characterization of mammalian proteins by MS. A new data base of human proteins ( and their possible variants) was created and searched using tandem mass spectrometric data from intact proteins. This first application of top down MS/MS to wild-type human proteins demonstrates both gene-specific identification and the unambiguous characterization of multifaceted mass shifts (Delta m values). Such Delta m values found from the precise identification of 45 protein forms from HeLa cells reveal 34 coding single nucleotide polymorphisms, two protein forms from alternative splicing, and 12 diverse modifications ( not including simple N-terminal processing), including a previously unknown phosphorylation at 10% occupancy. Automated protein identification was achieved with a median expectation value of 10(-13) and often occurred simultaneously with dissection of diverse sources of protein variability as they occur in combination. Top down MS therefore has a bright future for enabling precise annotation of gene products expressed from the human genome by non-mass spectrometrists.
机译:人蛋白质组是基因组的高度复杂的延伸,其中单个基因通常由于替代的剪接,RNA编辑,多态性和翻译后修饰而产生不同的蛋白质形式。目前,此类生物变异加上基因家族中的高序列同一性使MS对哺乳动物蛋白的完整和常规表征不堪重负。使用完整蛋白质的串联质谱数据创建并搜索了新的人类蛋白质(及其可能的变体)数据库。自上而下的MS / MS在野生型人类蛋白质中的首次应用证明了基因特异性鉴定和多方面质量转移(Δm值)的明确表征。从HeLa细胞中45种蛋白质形式的精确鉴定中发现的此类Delta m值揭示了34种编码的单核苷酸多态性,两种剪接形式的蛋白质形式以及12种不同的修饰(不包括简单的N末端加工),包括以前未知的磷酸化占用率10%。实现了自动化的蛋白质鉴定,其中值期望值为10(-13),并且经常与解剖发生的多种蛋白质变异性源同时出现时同时发生。因此,自上而下的MS拥有光明的前景,可实现对非质谱师从人类基因组表达的基因产物的精确注释。

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