Department of Pharmaceutical Chemistry, University of California, San Francisco, USA.
Nat Methods. 2012 Nov;9(11):1095-100. doi: 10.1038/nmeth.2182. Epub 2012 Sep 30.
We developed a simple and rapid multiplex substrate-profiling method to reveal the substrate specificity of any endo- or exopeptidase using liquid chromatography-tandem mass spectrometry sequencing. We generated a physicochemically diverse library of peptides 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 information on prime and nonprime sites as well as on substrate specificity that matched or expanded upon known substrate motifs. This method biochemically confirmed the activity of the klassevirus 3C protein responsible for polypeptide processing and allowed granzyme B substrates to be ranked by enzymatic turnover efficiency using label-free quantitation of precursor-ion abundance. Additionally, the proteolytic secretions from schistosome parasitic flatworm larvae and a pancreatic cancer cell line were deconvoluted in a subtractive strategy using class-specific peptidase inhibitors.
我们开发了一种简单快速的多重底物分析方法,通过液相色谱-串联质谱测序来揭示任何内肽酶或外肽酶的底物特异性。我们通过将相邻和近邻氨基酸对的所有组合纳入由独特二肽侧翼的十肽序列中,生成了一个物理化学多样性的肽文库。将一组进化上多样化的肽酶添加到这些十四肽混合物中,生成了关于主位和非主位以及与已知底物基序匹配或扩展的底物特异性的信息。该方法通过对负责多肽加工的 klassevirus 3C 蛋白的生化确认,以及使用无标签定量前体离子丰度的方法对酶转化率效率进行排名,对 granzyme B 底物进行了分类。此外,使用特定于类别的肽酶抑制剂的减法策略,对寄生扁形虫幼虫和胰腺癌细胞系的蛋白水解分泌物进行了剖析。