He Tao, Alving Kim, Feild Brian, Norton James, Joseloff Elizabeth G, Patterson Scott D, Domon Bruno
Celera Genomics, Rockville, Maryland 20850, USA.
J Am Soc Mass Spectrom. 2004 Mar;15(3):363-73. doi: 10.1016/j.jasms.2003.11.004.
Reversible phosphorylation of proteins represents an important component of cellular signaling pathways. The isolation of phosphoproteins in complex mixtures and the determination of the level of phosphorylation have been and remain a major challenge. It has prompted the development of several strategies, including immobilized metal affinity capture to enrich for phosphorylated peptides. An improved methodology was published (Ficarro, et al., Nature Biotechnology 2002, 20, 301-305) that showed increased selectivity through esterification of amino acid side chain carboxylic groups of enzymatically digested peptides. This method was applied for relative quantitation of phosphopeptides in conjunction with the use of stable isotope labeling. The merits and limits of the approach are discussed and its application to the analysis of the effects of serum starvation on in vitro cultured human lung cells is presented.
蛋白质的可逆磷酸化是细胞信号通路的重要组成部分。在复杂混合物中分离磷蛋白以及测定磷酸化水平一直是且仍然是一项重大挑战。这促使了多种策略的发展,包括固定化金属亲和捕获以富集磷酸化肽段。一种改进的方法已发表(菲卡罗等人,《自然·生物技术》2002年,20卷,301 - 305页),该方法通过对酶解肽段的氨基酸侧链羧基进行酯化来提高选择性。此方法与稳定同位素标记结合用于磷酸肽的相对定量。讨论了该方法的优缺点,并展示了其在分析血清饥饿对体外培养的人肺细胞影响中的应用。