Centre for Biologics Research, Biologics and Genetic Therapies Directorate, Health Canada, Ottawa, Ontario, Canada.
J Proteome Res. 2010 Jun 4;9(6):3311-8. doi: 10.1021/pr9011987.
A straightforward method using mild enzymatic digestions combined with MALDI mass spectrometry (MS) was used to enhance determination of the multiple phosphorylation sites of a set of recombinant nucleotide-binding proteins in Escherichia coli, including kinases and cystathionine beta-synthase (CBS) domain containing proteins. The protein kinases reveal abundant phosphorylations in the kinase domains and relatively low phosphogluconoylation (258 Da) at the N-terminal His-tag. In contrast, the CBS domain-containing proteins possess a highly conserved phosphorylation in vivo at Ser-2 of the His-tag. Multistage MS/MS and selected reaction monitoring established that the CBS domain proteins also contain a combined modification of gluconoylation (178 Da) and phosphorylation (80 Da) at two different sites, instead of an isobaric phosphogluconoylation (258 Da) event at the N-terminus. Functional analysis of 20 recombinant proteins as identified by mass spectrometry has shown the phosphorylation at the N-terminal His-tag is relevant to nucleotide binding and phosphotransfer reaction catalyzed by a serine protein kinase.
一种使用温和酶解结合 MALDI 质谱(MS)的直接方法,用于增强对一组重组核苷酸结合蛋白在大肠杆菌中的多个磷酸化位点的测定,包括激酶和半胱氨酸β-合酶(CBS)结构域蛋白。蛋白激酶在激酶结构域中显示出丰富的磷酸化,而 N 端组氨酸标签处的磷酸葡糖酰化(258 Da)相对较低。相比之下,CBS 结构域蛋白在体内的 His 标签的 Ser-2 位具有高度保守的磷酸化。多级 MS/MS 和选择反应监测表明,CBS 结构域蛋白还含有在两个不同位点的葡糖酰化(178 Da)和磷酸化(80 Da)的组合修饰,而不是 N 末端的等摩尔磷酸葡糖酰化(258 Da)事件。通过质谱鉴定的 20 种重组蛋白的功能分析表明,N 端组氨酸标签上的磷酸化与丝氨酸蛋白激酶催化的核苷酸结合和磷酸转移反应有关。