Department of Biochemistry, University of Saskatchewan, Saskatoon, Saskatchewan, Canada.
Proteomics. 2011 Dec;11(24):4595-609. doi: 10.1002/pmic.201100296. Epub 2011 Nov 23.
Phosphorylation is the predominant mechanism of post-translational modification for regulation of protein function. With central roles in virtually every cellular process, and strong linkages with many diseases, there is a considerable interest in defining, and ultimately controlling, kinase activities. Investigations of human cellular phosphorylation events, which includes over 500 different kinases and tens of thousands of phosphorylation targets, represent a daunting challenge for proteomic researchers and cell biologists alike. As such, there is a priority to develop tools that enable the evaluation of cellular phosphorylation events in a high-throughput, and biologically relevant, fashion. Towards this objective, two distinct, but functionally related, experimental approaches have emerged; phosphoproteome investigations, which focus on the sub-population of proteins which undergo phosphorylation and kinome analysis, which considers the activities of the kinase enzymes mediating these phosphorylation events. Within kinome analysis, peptide arrays have demonstrated considerable potential as a cost-effective, high-throughput approach for defining phosphorylation-mediated signal transduction activity. In particular, a number of recent advances in the application of peptide arrays for kinome analysis have enabled researchers to tackle increasingly complex biological problems in a wider range of species. In this review, recent advances in kinomic analysis utilizing peptides arrays including several of the biological questions studied by our group, as well as outstanding challenges still facing this technology, are discussed.
磷酸化是蛋白质功能调节的主要翻译后修饰机制。激酶在几乎所有细胞过程中都起着核心作用,并与许多疾病有很强的联系,因此人们对定义激酶活性并最终控制激酶活性有着相当大的兴趣。对人类细胞磷酸化事件的研究,包括 500 多种不同的激酶和数万种磷酸化靶标,对蛋白质组学研究人员和细胞生物学家来说都是一个艰巨的挑战。因此,开发能够以高通量和生物学相关的方式评估细胞磷酸化事件的工具成为当务之急。为此,出现了两种截然不同但功能相关的实验方法;磷酸蛋白质组学研究,重点研究经历磷酸化的蛋白质亚群,以及激酶组分析,考虑介导这些磷酸化事件的激酶酶的活性。在激酶组分析中,肽阵列已经证明了作为一种具有成本效益的高通量方法来定义磷酸化介导的信号转导活性的巨大潜力。特别是,肽阵列在激酶组分析中的一些应用的最新进展使研究人员能够在更广泛的物种范围内解决越来越复杂的生物学问题。在这篇综述中,讨论了利用肽阵列进行激酶组分析的最新进展,包括我们小组研究的几个生物学问题,以及该技术仍然面临的突出挑战。