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Global Identification of Peptidase Specificity by Multiplex Substrate Profiling

机译:肽酶特异性的全球统一标识的多重底剖析

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摘要

A simple and rapid multiplex substrate profiling method has been developed to reveal the substrate specificity of any endo- or exo-peptidase using LC-MS/MS sequencing. A physicochemically diverse library of peptides was generated by incorporating all combinations of neighbor and near-neighbor amino acid pairs into decapeptide sequences that are flanked by unique dipeptides at each terminus. Addition of a panel of evolutionarily diverse peptidases to a mixture of these tetradecapeptides generated prime and non-prime site information and substrate specificity matched or expanded upon previous substrate motifs. This method biochemically confirmed the activity of the klassevirus 3C gene responsible for polypeptide processing and allowed Granzyme B substrates to be ranked by enzymatic turnover efficiency using label-free quantitation of precursor ion abundance. Furthermore, the proteolytic secretions from a parasitic flatworm larvae and a pancreatic cancer cell line were deconvoluted in a subtractive strategy using class-specific peptidase inhibitors.
机译:已开发出一种简单快速的多重底物分析方法,以揭示使用LC-MS / MS测序的任何内切肽酶或外切肽酶的底物特异性。通过将邻氨基酸和近邻氨基酸对的所有组合掺入十肽序列中来生成肽的物理化学多样性文库,所述十肽序列在每个末端侧接独特的二肽。向这些四十肽的混合物中添加一组进化上不同的肽酶,产生了原始和非原始位点信息,并且底物特异性与先前的底物基序匹配或扩展。该方法通过生化方法确认了负责多肽加工的克拉斯病毒3C基因的活性,并使用前体离子丰度的无标记定量方法通过酶促转化效率对Granzyme B底物进行了排名。此外,使用类特异性肽酶抑制剂以消减策略对来自寄生扁虫幼虫和胰腺癌细胞系的蛋白水解分泌进行去卷积。

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