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首页> 外文期刊>FEBS Letters >Mutational analysis of Glu272 in elongation factor 1A of E. coli
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Mutational analysis of Glu272 in elongation factor 1A of E. coli

机译:大肠杆菌延伸因子1A中Glu272的突变分析

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摘要

>In our previous work (Mansilla et al. (1997) Protein Eng. 10, 927–934) we showed that Arg7 of Escherichia coli elongation factor Tu (EF1A) plays an essential role in aminoacyl-tRNA (aa-tRNA) binding. Substitution of Arg7 by Ala or Glu lost this activity. We proposed that Arg7 forms a salt bridge with the charged conserved amino acid Glu272 (Asp284 in Thermus aquaticus) thereby binding the N-terminal region of the protein to domain 2 and thus completing the conformational rearrangement needed for binding aa-tRNA. In this work we have mutated Glu272 to arginine, either alone (Glu272Arg), or in combination with one of the above mentioned mutations (Arg7Glu/Glu272Arg) in order to test this hypothesis. Our results show that, in confirmation of our thesis based on structural knowledge, the substitution of Glu272 (Asp284) decreases the ability of EF1A:GTP to bind aa-tRNA.
机译:>在我们先前的工作(Mansilla等人,(1997)Protein Eng。10,927–934)中,我们显示了大肠杆菌延伸因子Tu(的Arg 7 EF1A)在氨酰基-tRNA(aa-tRNA)结合中起重要作用。用Ala或Glu取代Arg 7 会失去该活性。我们建议Arg 7 与带电荷的保守氨基酸Glu 272 Thermus aquaticus 中的Asp 284 )形成盐桥从而将蛋白质的N末端区域与结构域2结合,从而完成结合aa-tRNA所需的构象重排。在这项工作中,我们将Glu 272 突变为精氨酸,可以是单独的(Glu 272 Arg),也可以是上述突变之一(Arg 7 < / sup> Glu / Glu 272 Arg)以验证该假设。我们的结果表明,基于结构知识对我们的论文的证实是,Glu 272 (Asp 284 )的取代降低了EF1A:GTP结合aa-tRNA的能力。

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