Central Institute for Engineering, Electronics and Analytics, ZEA-3, Forschungszentrum Jülich, Jülich, Germany.
Department of Biomedicine, Aarhus University, Aarhus, Denmark.
Methods Mol Biol. 2022;2447:159-174. doi: 10.1007/978-1-0716-2079-3_13.
Substrate sequence specificity is a fundamental characteristic of proteolytic enzymes. Hundreds of proteases are encoded in plant genomes, but the vast majority of them have not been characterized and their distinct specificity remains largely unknown. Here we present our current protocol for profiling sequence specificity of plant proteases using Proteomic Identification of Cleavage Sites (PICS). This simple, cost-effective protocol is suited for detailed, time-resolved specificity profiling of purified or enriched proteases. The isolated active protease or fraction with enriched protease activity together with a suitable control are incubated with split aliquots of proteome-derived peptide libraries, followed by identification of specifically cleaved peptides using quantitative mass spectrometry. Detailed specificity profiles are obtained by alignment of many individual cleavage sites. The chapter covers preparation of complementary peptide libraries from heterologous sources, the cleavage assay itself, as well as mass spectrometry data analysis.
底物序列特异性是蛋白水解酶的一个基本特征。植物基因组中编码了数百种蛋白酶,但绝大多数尚未得到鉴定,其独特的特异性在很大程度上仍是未知的。在这里,我们介绍了使用蛋白组学切割位点鉴定(PICS)来分析植物蛋白酶序列特异性的现行方案。这个简单、经济有效的方案适用于对纯化或富集的蛋白酶进行详细的、时间分辨的特异性分析。将分离的活性蛋白酶或富含蛋白酶活性的级分与合适的对照一起孵育,分成多个等分的蛋白组衍生肽文库,然后使用定量质谱法鉴定特异性切割的肽。通过对齐许多单个切割位点来获得详细的特异性谱。本章涵盖了从异源来源制备互补肽文库、切割测定本身以及质谱数据分析。