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首页> 外文期刊>Nucleic Acids Research >From one amino acid to another: tRNA-dependent amino acid biosynthesis
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From one amino acid to another: tRNA-dependent amino acid biosynthesis

机译:从一种氨基酸到另一种氨基酸:依赖tRNA的氨基酸生物合成

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Aminoacyl-tRNAs (aa-tRNAs) are the essential substrates for translation. Most aa-tRNAs are formed by direct aminoacylation of tRNA catalyzed by aminoacyl-tRNA synthetases. However, a smaller number of aa-tRNAs (Asn-tRNA, Gln-tRNA, Cys-tRNA and Sec-tRNA) are made by synthesizing the amino acid on the tRNA by first attaching a non-cognate amino acid to the tRNA, which is then converted to the cognate one catalyzed by tRNA-dependent modifying enzymes. Asn-tRNA or Gln-tRNA formation in most prokaryotes requires amidation of Asp-tRNA or Glu-tRNA by amidotransferases that couple an amidase or an asparaginase to liberate ammonia with a tRNA-dependent kinase. Both archaeal and eukaryotic Sec-tRNA biosynthesis and Cys-tRNA synthesis in methanogens require O-phosophoseryl-tRNA formation. For tRNA-dependent Cys biosynthesis, O-phosphoseryl-tRNA synthetase directly attaches the amino acid to the tRNA which is then converted to Cys by Sep-tRNA: Cys-tRNA synthase. In Sec-tRNA synthesis, O-phosphoseryl-tRNA kinase phosphorylates Ser-tRNA to form the intermediate which is then modified to Sec-tRNA by Sep-tRNA:Sec-tRNA synthase. Complex formation between enzymes in the same pathway may protect the fidelity of protein synthesis. How these tRNA-dependent amino acid biosynthetic routes are integrated into overall metabolism may explain why they are still retained in so many organisms.
机译:氨酰基-tRNA(aa-tRNA)是翻译的重要底物。大多数aa-tRNA是由氨酰基-tRNA合成酶催化的tRNA直接氨基酰化形成的。但是,通过首先将非同源氨基酸附着到tRNA上来合成tRNA上的氨基酸,从而制造出较少数量的aa-tRNA(Asn-tRNA,Gln-tRNA,Cys-tRNA和Sec-tRNA)。然后通过依赖tRNA的修饰酶将其转化为同源的。在大多数原核生物中,Asn-tRNA或Gln-tRNA的形成需要通过酰胺酶或天冬酰胺酶偶联酰胺转移酶来使Asp-tRNA或Glu-tRNA酰胺化,以通过tRNA依赖性激酶释放氨。产甲烷菌中的古细菌和真核生物Sec-tRNA的生物合成以及Cys-tRNA的合成都需要O-磷酸二氢丝氨酰-tRNA的形成。对于依赖tRNA的Cys生物合成,O-磷酸核糖基tRNA合成酶直接将氨基酸附着到tRNA,然后通过Sep-tRNA将其转化为Cys:Cys-tRNA合酶。在Sec-tRNA合成中,O-磷酰基-tRNA激酶使Ser-tRNA磷酸化,形成中间体,然后通过Sep-tRNA:Sec-tRNA合酶将其修饰为Sec-tRNA。同一途径中酶之间的复合物形成可以保护蛋白质合成的保真度。这些依赖tRNA的氨基酸生物合成途径如何整合到整体代谢中,可能解释了为什么它们仍保留在如此众多的生物中。

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