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Identification of mammalian arginyltransferases that modify a specific subset of protein substrates

机译:鉴定修饰蛋白质底物特定子集的哺乳动物精氨酸转移酶

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Posttranslational N-terminal protein arginylation, mediated by Arg-tRNA-protein transferase 1 (ATE1), is essential for cardiovascular development and angiogenesis in mammals but is nonessen-tial in yeast. Evidence suggests that many proteins are arginylated in vivo in both mammals and yeast; however, in yeast, N-terminal arginylation can occur only on proteins bearing an N-terminal Asp or Glu, whereas in mammals, N-terminal Cys residues are also arginylation targets, suggesting that Cys arginylation contributes to the essential role of ATE1 in mammals. To date, all of the characterized forms of ATE1 in yeast and mammals have been shown to arginylate only Asp and Glu, leaving open to speculation whether Cys arginylation is possible only through other components of mammalian arginylation machinery and whether Cys-specific forms of Arg-transferase exist in mammals. Here, we report the identification of two forms of Arg-transferase in mice that are specific for N-terminal Cys. We also show that the two previously identified mammalian forms of ATE1 can arginylate Cys-containing substrates in addition to Asp- and Glu-containing substrates. This finding provides insights into the significance of Cys-specific protein arginylation in mammals and suggests possibilities of the determinants of substrate specificity within the ATE1 molecule.
机译:由Arg-tRNA-蛋白质转移酶1(ATE1)介导的翻译后N末端蛋白质精氨酰化对于哺乳动物的心血管发育和血管生成必不可少,但在酵母中则不是必需的。有证据表明,哺乳动物和酵母体内许多蛋白质都被精氨酰化。但是,在酵母中,N末端的精氨酰化作用只能发生在带有N末端的Asp或Glu的蛋白质上,而在哺乳动物中,N末端的Cys残基也是精氨酸化的目标,这表明Cys的精氨酸化作用有助于ATE1在哺乳动物中的重要作用。 。迄今为止,已证明酵母和哺乳动物中所有ATE1的特征形式都仅精氨酸化Asp和Glu,这使得人们推测是否仅通过哺乳动物精氨酸化机制的其他成分才能使Cys精氨酸化,以及是否有Cys特异性形式的Arg-转移酶存在于哺乳动物中。在这里,我们报告了对N端半胱氨酸特异的小鼠中两种形式的Arg转移酶的鉴定。我们还显示,ATE1的两个先前确定的哺乳动物形式除了含Asp和Glu的底物外,还可以使含Cys的底物精氨酸化。该发现提供了对哺乳动物中Cys特异性蛋白精氨酰化重要性的见解,并暗示了确定ATE1分子内底物特异性的决定因素的可能性。

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