Wong Catherine C L, Xu Tao, Rai Reena, Bailey Aaron O, Yates John R, Wolf Yuri I, Zebroski Henry, Kashina Anna
The Scripps Research Institute, LaJolla, California, United States of America.
PLoS Biol. 2007 Oct;5(10):e258. doi: 10.1371/journal.pbio.0050258.
Posttranslational arginylation is critical for embryogenesis, cardiovascular development, and angiogenesis, but its molecular effects and the identity of proteins arginylated in vivo are largely unknown. Here we report a global analysis of this modification on the protein level and identification of 43 proteins arginylated in vivo on highly specific sites. Our data demonstrate that unlike previously believed, arginylation can occur on any N-terminally exposed residue likely defined by a structural recognition motif on the protein surface, and that it preferentially affects a number of physiological systems, including cytoskeleton and primary metabolic pathways. The results of our study suggest that protein arginylation is a general mechanism for regulation of protein structure and function and outline the potential role of protein arginylation in cell metabolism and embryonic development.
翻译后精氨酸化对胚胎发育、心血管发育和血管生成至关重要,但其分子效应以及体内被精氨酸化的蛋白质的身份在很大程度上尚不清楚。在此,我们报告了在蛋白质水平上对这种修饰的全面分析,并鉴定出43种在体内高度特异性位点被精氨酸化的蛋白质。我们的数据表明,与之前所认为的不同,精氨酸化可发生在任何可能由蛋白质表面的结构识别基序所界定的N端暴露残基上,并且它优先影响包括细胞骨架和初级代谢途径在内的多个生理系统。我们的研究结果表明,蛋白质精氨酸化是调节蛋白质结构和功能的一种普遍机制,并概述了蛋白质精氨酸化在细胞代谢和胚胎发育中的潜在作用。