Delom Frédéric, Chevet Eric
Dept of Surgery, McGill University, Montreal, Quebec, Canada.
Proteome Sci. 2006 Jul 19;4:15. doi: 10.1186/1477-5956-4-15.
Characterization of protein modification by phosphorylation is one of the major tasks that have to be accomplished in the post-genomic era. Phosphorylation is a key reversible modification occurring mainly on serine, threonine and tyrosine residues that can regulate enzymatic activity, subcellular localization, complex formation and degradation of proteins. The understanding of the regulatory role played by phosphorylation begins with the discovery and identification of phosphoproteins and then by determining how, where and when these phosphorylation events take place. Because phosphorylation is a dynamic process difficult to quantify, we must at first acquire an inventory of phosphoproteins and characterize their phosphorylation sites. Several experimental strategies can be used to explore the phosphorylation status of proteins from individual moieties to phosphoproteomes. In this review, we will examine and catalogue how proteomics techniques can be used to answer specific questions related to protein phosphorylation. Hence, we will discuss the different methods for enrichment of phospho-proteins and -peptides, and then the various technologies for their identification, quantitation and validation.
磷酸化蛋白质修饰的表征是后基因组时代必须完成的主要任务之一。磷酸化是一种主要发生在丝氨酸、苏氨酸和酪氨酸残基上的关键可逆修饰,它可以调节酶活性、亚细胞定位、复合物形成以及蛋白质降解。对磷酸化所起调节作用的理解始于磷蛋白的发现与鉴定,然后是确定这些磷酸化事件如何、在何处以及何时发生。由于磷酸化是一个难以量化的动态过程,我们首先必须获取磷蛋白清单并表征其磷酸化位点。有几种实验策略可用于探索从单个部分到磷酸化蛋白质组的蛋白质磷酸化状态。在本综述中,我们将研究并编目蛋白质组学技术如何用于回答与蛋白质磷酸化相关的特定问题。因此,我们将讨论富集磷酸化蛋白质和磷酸化肽的不同方法,然后讨论用于其鉴定、定量和验证的各种技术。