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古菌中氨酰-tRNA合成酶与一种假定的代谢蛋白的关联。

Association of an aminoacyl-tRNA synthetase with a putative metabolic protein in archaea.

作者信息

Lipman Richard S A, Chen Jing, Evilia Caryn, Vitseva Olga, Hou Ya-Ming

机构信息

Department of Biochemistry and Molecular Pharmacology, Thomas Jefferson University, 233 South 10th Street, BLSB 220, Philadelphia, Pennsylvania 19107, USA.

出版信息

Biochemistry. 2003 Jun 24;42(24):7487-96. doi: 10.1021/bi0344533.

Abstract

Aminoacyl-tRNA synthetases are essential enzymes that catalyze attachment of amino acids to tRNAs for decoding of genetic information. In higher eukaryotes, several synthetases associate with non-synthetase proteins to form a high-molecular mass complex that may improve the efficiency of protein synthesis. This multi-synthetase complex is not found in bacteria. Here we describe the isolation of a non-synthetase protein from the archaeon Methanocaldococcus jannaschii that was copurified with prolyl-tRNA synthetase (ProRS). This protein, Mj1338, also interacts with several other tRNA synthetases and has an affinity for general tRNA, suggesting the possibility of forming a multi-synthetase complex. However, unlike the non-synthetase proteins in the eukaryotic complex, the protein Mj1338 is predicted to be a metabolic protein, related to members of the family of H(2)-forming N(5),N(10)-methylene tetrahydromethanopterin (5,10-CH(2)-H(4)MP) dehydrogenases that are involved in the one-carbon metabolism of the archaeon. The association of Mj1338 with ProRS, and with other components of the protein synthesis machinery, thus suggests the possibility of a closer link between metabolism and decoding in archaea than in eukarya or bacteria.

摘要

氨酰-tRNA合成酶是一类重要的酶,它们催化氨基酸与tRNA的连接,用于遗传信息的解码。在高等真核生物中,几种合成酶与非合成酶蛋白结合形成高分子量复合物,这可能会提高蛋白质合成的效率。细菌中不存在这种多合成酶复合物。在这里,我们描述了从嗜热栖热甲烷球菌中分离出一种非合成酶蛋白,它与脯氨酰-tRNA合成酶(ProRS)共同纯化。这种蛋白Mj1338还与其他几种tRNA合成酶相互作用,并且对一般tRNA具有亲和力,这表明有可能形成多合成酶复合物。然而,与真核复合物中的非合成酶蛋白不同,预测蛋白Mj1338是一种代谢蛋白,与参与古菌一碳代谢的生成H₂的N₅,N₁₀-亚甲基四氢甲蝶呤(5,10-CH₂-H₄MP)脱氢酶家族成员有关。因此,Mj1338与ProRS以及蛋白质合成机器的其他组分的关联表明,古菌中代谢与解码之间的联系可能比真核生物或细菌更为紧密。

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