首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Dual-targeted tRNA-dependent amidotransferase ensures both mitochondrial and chloroplastic Gln-tRNAGln synthesis in plants
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Dual-targeted tRNA-dependent amidotransferase ensures both mitochondrial and chloroplastic Gln-tRNAGln synthesis in plants

机译:双重靶向tRNA依赖性酰胺基转移酶可确保植物中线粒体和叶绿素Gln-tRNAGln的合成

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摘要

Aminoacyl-tRNAs are generally formed by direct attachment of an amino acid to tRNAs by aminoacyl-tRNA synthetases, but Gln-tRNA is an exception to this rule. Gln-tRNAGln is formed by this direct pathway in the eukaryotic cytosol and in protists or fungi mitochondria but is formed by an indirect transamidation pathway in most of bacteria, archaea, and chloroplasts. We show here that the formation of Gln-tRNAGln is also achieved by the indirect pathway in plant mitochondria. The mitochondrial-encoded tRNAGln, which is the only tRNAGln present in mitochondria, is first charged with glutamate by a nondiscriminating GluRS, then is converted into Gln-tRNAGln by a tRNA-dependent amidotransferase (AdT). The three subunits GatA, GatB, and GatC are imported into mitochondria and assemble into a functional GatCAB AdT. Moreover, the mitochondrial pathway of Gln-tRNAGln formation is shared with chloroplasts as both the GluRS, and the three AdT subunits are dual-imported into mitochondria and chloroplasts.
机译:氨酰基-tRNA通常是通过氨酰基-tRNA合成酶将氨基酸直接连接到tRNA上而形成的,但Gln-tRNA是该规则的一个例外。 Gln-tRNA Gln 是在真核细胞溶胶和原生质体或真菌线粒体中通过这种直接途径形成的,但在大多数细菌,古细菌和叶绿体中是通过间接转酰胺基途径形成的。我们在这里表明,Gln-tRNA Gln 的形成也是通过植物线粒体中的间接途径实现的。线粒体编码的tRNA Gln 是线粒体中存在的唯一tRNA Gln ,首先通过非歧视性GluRS加载谷氨酸,然后转化为Gln-tRNA Gln 通过tRNA依赖性酰胺基转移酶(AdT)。将三个亚基GatA,GatB和GatC导入线粒体并组装成功能性GatCAB AdT。此外,Glu-tRNA Gln 形成的线粒体途径与叶绿体共享,因为两者都是GluRS,并且三个AdT亚基被双重导入线粒体和叶绿体中。

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