Tanco Sebastian, Aviles Francesc Xavier, Gevaert Kris, Lorenzo Julia, Van Damme Petra
VIB-UGent Center for Medical Biotechnology, B-9000, Ghent, Belgium.
Department of Biochemistry, Ghent University, B-9000, Ghent, Belgium.
Methods Mol Biol. 2017;1574:115-133. doi: 10.1007/978-1-4939-6850-3_9.
We here present a detailed procedure for studying protein C-termini and their posttranslational modifications by C-terminal COFRADIC. In fact, this procedure can enrich for both C-terminal and N-terminal peptides through a combination of a strong cation exchange fractionation step at low pH, which removes the majority of nonterminal peptides in whole-proteome digests, while the actual COFRADIC step segregates C-terminal peptides from N-terminal peptides. When used in a differential mode, C-terminal COFRADIC allows for the identification of neo-C-termini generated by the action of proteases, which in turn leads to the identification of protease substrates. More specifically, this technology can be applied to determine the natural substrate repertoire of carboxypeptidases on a proteome-wide scale.
我们在此介绍一种通过C端COFRADIC研究蛋白质C末端及其翻译后修饰的详细方法。事实上,该方法可通过低pH下的强阳离子交换分级分离步骤,富集C末端和N末端肽段,此步骤可去除全蛋白质组消化物中的大部分非末端肽段,而实际的COFRADIC步骤则将C末端肽段与N末端肽段分离。当以差异模式使用时,C端COFRADIC可用于鉴定由蛋白酶作用产生的新C末端,进而鉴定蛋白酶底物。更具体地说,该技术可应用于在全蛋白质组范围内确定羧肽酶的天然底物库。