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Amino acid residues of the Escherichia coli tRNA(m5U54)methyltransferase (TrmA) critical for stability, covalent binding of tRNA and enzymatic activity

机译:大肠杆菌tRNA(m5U54)甲基转移酶(TrmA)的氨基酸残基对于稳定性,tRNA的共价结合和酶促活性至关重要

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摘要

The Escherichia coli trmA gene encodes the tRNA(m5U54)methyltransferase, which catalyses the formation of m5U54 in tRNA. During the synthesis of m5U54, a covalent 62-kDa TrmA-tRNA intermediate is formed between the amino acid C324 of the enzyme and the 6-carbon of uracil. We have analysed the formation of this TrmA-tRNA intermediate and m5U54 in vivo, using mutants with altered TrmA. We show that the amino acids F188, Q190, G220, D299, R302, C324 and E358, conserved in the C-terminal catalytic domain of several RNA(m5U)methyltransferases of the COG2265 family, are important for the formation of the TrmA-tRNA intermediate and/or the enzymatic activity. These amino acids seem to have the same function as the ones present in the catalytic domain of RumA, whose structure is known, and which catalyses the formation of m5U in position 1939 of E. coli 23 S rRNA. We propose that the unusually high in vivo level of the TrmA-tRNA intermediate in wild-type cells may be due to a suboptimal cellular concentration of SAM, which is required to resolve this intermediate. Our results are consistent with the modular evolution of RNA(m5U)methyltransferases, in which the specificity of the enzymatic reaction is achieved by combining the conserved catalytic domain with different RNA-binding domains.
机译:大肠杆菌trmA基因编码tRNA(m5U54)甲基转移酶,催化tRNA中m5U54的形成。在合成m5U54的过程中,在该酶的氨基酸C324和尿嘧啶的6碳之间形成了共价62 kDa TrmA-tRNA中间体。我们已经分析了TrmA-tRNA中间体和m5U54在体内的形成,使用的是TrmA改变的突变体。我们显示的氨基酸F188,Q190,G220,D299,R302,C324和E358,在COG2265家族的几个RNA(m5U)甲基转移酶的C末端催化域中保守,对于TrmA-tRNA的形成很重要中间和/或酶促活性。这些氨基酸似乎与RumA催化结构域中存在的氨基酸具有相同的功能,其结构是已知的,并且可以催化大肠杆菌23 S rRNA的1939位m5U的形成。我们提出,野生型细胞中TrmA-tRNA中间体的体内异常高水平可能是由于SAM的细胞浓度未达到最佳,这是解决该中间体所必需的。我们的结果与RNA(m5U)甲基转移酶的模块进化是一致的,其中酶反应的特异性是通过将保守的催化结构域与不同的RNA结合结构域结合来实现的。

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