McGivern Jered V, Swaney Danielle L, Coon Joshua J, Sheets Michael D
Department of Biomolecular Chemistry, University of Wisconsin, Madison, Madison, Wisconsin, USA.
Dev Dyn. 2009 Jun;238(6):1433-43. doi: 10.1002/dvdy.21941.
Phosphorylation is universally used for controlling protein function, but knowledge of the phosphoproteome in vertebrate embryos has been limited. However, recent technical advances make it possible to define an organism's phosphoproteome at a more comprehensive level. Xenopus laevis offers established advantages for analyzing the regulation of protein function by phosphorylation. Functionally unbiased, comprehensive information about the Xenopus phosphoproteome would provide a powerful guide for future studies of phosphorylation in a developmental context. To this end, we performed a phosphoproteomic analysis of Xenopus oocytes, eggs, and embryos using recently developed mass spectrometry methods. We identified 1,441 phosphorylation sites present on 654 different Xenopus proteins, including hundreds of previously unknown phosphorylation sites. This approach identified several phosphorylation sites described in the literature and/or evolutionarily conserved in other organisms, validating the data's quality. These data will serve as a powerful resource for the exploration of phosphorylation and protein function within a developmental context. Developmental Dynamics 238:1433-1443, 2009. (c) 2009 Wiley-Liss, Inc.
磷酸化作用被广泛用于调控蛋白质功能,但脊椎动物胚胎中磷酸化蛋白质组的相关知识一直很有限。然而,最近的技术进步使得在更全面的层面定义生物体的磷酸化蛋白质组成为可能。非洲爪蟾在分析磷酸化作用对蛋白质功能的调控方面具有既定优势。关于非洲爪蟾磷酸化蛋白质组的功能无偏倚的全面信息,将为未来在发育背景下对磷酸化作用的研究提供有力指导。为此,我们使用最近开发的质谱方法对非洲爪蟾的卵母细胞、卵和胚胎进行了磷酸化蛋白质组分析。我们鉴定出存在于654种不同非洲爪蟾蛋白质上的1441个磷酸化位点,其中包括数百个先前未知的磷酸化位点。这种方法鉴定出了文献中描述的以及/或者在其他生物体中进化保守的几个磷酸化位点,验证了数据的质量。这些数据将成为在发育背景下探索磷酸化作用和蛋白质功能的有力资源。《发育动力学》238:1433 - 1443,2009年。(c) 2009威利 - 利斯公司。