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秀丽隐杆线虫线粒体延伸因子 Tu2 独特丝氨酸特异性相关残基的鉴定

Identification of the residues involved in the unique serine specificity of Caenorhabditis elegans mitochondrial EF-Tu2.

作者信息

Sato Aya, Watanabe Yoh-ichi, Suzuki Tsutomu, Komiyama Makoto, Watanabe Kimitsuna, Ohtsuki Takashi

机构信息

Department of Chemistry and Biotechnology, Graduate School of Engineering, University of Tokyo, 7-3-1 Hongo, Bunkyo-ku, Tokyo 113-8656, Japan.

出版信息

Biochemistry. 2006 Sep 12;45(36):10920-7. doi: 10.1021/bi060536i.

Abstract

In canonical translation systems, the single elongation factor Tu (EF-Tu) recognizes all elongator tRNAs. However, in Caenorhabditis elegans mitochondria, two distinct EF-Tu species, EF-Tu1 and EF-Tu2, recognize 20 species of T armless tRNA and two species of D armless tRNA(Ser), respectively. We previously reported that C. elegans mitochondrial EF-Tu2 specifically recognizes the serine moiety of serylated-tRNA. In this study, to identify the critical residues for the serine specificity in EF-Tu2, several residues in the amino acid binding pocket of bacterial EF-Tu were systematically replaced with corresponding EF-Tu2 residues, and the mutants were analyzed for their specificity for esterified amino acids attached to tRNAs. In this way, we obtained a bacterial EF-Tu mutant that acquired serine specificity after the introduction of 10 EF-Tu2 residues into its amino acid binding pocket. C. elegans EF-Tu2 mutants lacking serine specificity were also created by replacing seven or eight residues with bacterial residues. Further stressing the importance of these residues, we found that they are almost conserved in EF-Tu2 sequences of closely related nematodes. Thus, these three approaches reveal the critical residues essential for the unique serine specificity of C. elegans mitochondrial EF-Tu2.

摘要

在典型的翻译系统中,单一的延伸因子Tu(EF-Tu)识别所有的延伸tRNA。然而,在秀丽隐杆线虫线粒体中,两种不同的EF-Tu,即EF-Tu1和EF-Tu2,分别识别20种无T臂的tRNA和两种无D臂的tRNA(Ser)。我们之前报道过,秀丽隐杆线虫线粒体EF-Tu2特异性识别氨酰化tRNA的丝氨酸部分。在本研究中,为了确定EF-Tu2中丝氨酸特异性的关键残基,细菌EF-Tu氨基酸结合口袋中的几个残基被系统地替换为相应的EF-Tu2残基,并分析这些突变体对tRNA上酯化氨基酸的特异性。通过这种方式,我们获得了一个细菌EF-Tu突变体,在其氨基酸结合口袋中引入10个EF-Tu2残基后获得了丝氨酸特异性。通过用细菌残基替换七个或八个残基,也构建了缺乏丝氨酸特异性的秀丽隐杆线虫EF-Tu2突变体。进一步强调这些残基的重要性,我们发现它们在近缘线虫的EF-Tu2序列中几乎是保守的。因此,这三种方法揭示了秀丽隐杆线虫线粒体EF-Tu2独特的丝氨酸特异性所必需的关键残基。

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