Posttranslational arginylation mediated by arginyl transferase (ATE1) plays an important role in cardiovascular development, cell motility, and regulation of cytoskeleton and metabolic enzymes. This protein modification was discovered decades ago, however, the arginylation reaction and the functioning of ATE1 remained poorly understood because of the lack of good biochemical models. Here, we report the development of an in vitro arginylation system, in which ATE1 function and molecular requirements can be tested using purified recombinant ATE1 isoforms supplemented with a controlled number of components. Our results show that arginylation reaction is a self-sufficient, ATP-independent process that can affect different sites in a polypeptide and that arginyl transferases form different molecular complexes in vivo, associate with components of the translation machinery, and have distinct, partially overlapping subsets of substrates, suggesting that these enzymes play different physiological functions.
Arginyltransferase is an ATP-independent self-regulating enzyme that forms distinct functional complexes in vivo.
精氨酰转移酶是一种不依赖 ATP 的自调节酶,可在体内形成不同的功能复合物
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作者:Wang Junling, Han Xuemei, Saha Sougata, Xu Tao, Rai Reena, Zhang Fangliang, Wolf Yuri I, Wolfson Alexey, Yates John R 3rd, Kashina Anna
| 期刊: | Chemistry & Biology | 影响因子: | 0.000 |
| 时间: | 2011 | 起止号: | 2011 Jan 28; 18(1):121-30 |
| doi: | 10.1016/j.chembiol.2010.10.016 | 研究方向: | 免疫/内分泌 |
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