Marchini Fabricio K, de Godoy Lyris Martins Franco, Batista Michel, Kugeratski Fernanda G, Krieger Marco A
Functional Genomics Laboratory, Fiocruz - Parana, Brazil.
Subcell Biochem. 2014;74:351-78. doi: 10.1007/978-94-007-7305-9_15.
The identification and localization of protein phosphorylation sites provide clues to what proteins or pathways might be activated in a given condition, helping to improve our understanding about signaling networks. Advances in strategies for enrichment of phosphorylated peptides/proteins, mass spectrometry (MS) instrumentation, and specific MS techniques for identification and quantification of post-translational modifications have allowed for large-scale mapping of phosphorylation sites, promoting the field of phosphoproteomics. The great promise of phosphoproteomics is to unravel the dynamics of signaling networks, a layer of the emerging field of systems biology. Until a few years ago only a small number of phosphorylation sites had been described. Following large-scale trends, recent phosphoproteomic studies have reported the mapping of thousands of phosphorylation sites in trypanosomatids. However, quantitative information about the regulation of such sites in different conditions is still lacking. In this chapter, we provide a historical overview of phosphoproteomic studies for trypanosomatids and discuss some challenges and perspectives in the field.
蛋白质磷酸化位点的鉴定和定位为特定条件下可能被激活的蛋白质或信号通路提供了线索,有助于增进我们对信号网络的理解。磷酸化肽段/蛋白质富集策略、质谱(MS)仪器以及用于鉴定和定量翻译后修饰的特定MS技术的进展,使得磷酸化位点的大规模图谱绘制成为可能,推动了磷酸化蛋白质组学领域的发展。磷酸化蛋白质组学的巨大前景在于揭示信号网络的动态变化,这是新兴的系统生物学领域的一个层面。直到几年前,仅有少数磷酸化位点被描述。随着大规模研究趋势的发展,近期的磷酸化蛋白质组学研究报告了锥虫中数千个磷酸化位点的图谱绘制。然而,关于这些位点在不同条件下调控的定量信息仍然缺乏。在本章中,我们提供了锥虫磷酸化蛋白质组学研究的历史概述,并讨论了该领域的一些挑战和前景。