首页> 美国卫生研究院文献>Journal of Bacteriology >A single glutamyl-tRNA synthetase aminoacylates tRNAGlu and tRNAGln in Bacillus subtilis and efficiently misacylates Escherichia coli tRNAGln1 in vitro.
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A single glutamyl-tRNA synthetase aminoacylates tRNAGlu and tRNAGln in Bacillus subtilis and efficiently misacylates Escherichia coli tRNAGln1 in vitro.

机译:单个谷氨酰-tRNA合成酶氨基酰化枯草芽孢杆菌中的tRNAGlu和tRNAGln并在体外有效地使大肠杆菌tRNAGln1发生错误酰化。

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摘要

In the presence or absence of its regulatory factor, the monomeric glutamyl-tRNA synthetase from Bacillus subtilis can aminoacylate in vitro with glutamate both tRNAGlu and tRNAGln from B. subtilis and tRNAGln1 but not tRNAGln2 or tRNAGlu from Escherichia coli. The Km and Vmax values of the enzyme for its substrates in these homologous or heterologous aminoacylation reactions are very similar. This enzyme is the only aminoacyl-tRNA synthetase reported to aminoacylate with normal kinetic parameters two tRNA species coding for different amino acids and to misacylate at a high rate a heterologous tRNA under normal aminoacylation conditions. The exceptional lack of specificity of this enzyme for its tRNAGlu and tRNAGln substrates, together with structural and catalytic peculiarities shared with the E. coli glutamyl- and glutaminyl-tRNA synthetases, suggests the existence of a close evolutionary linkage between the aminoacyl-tRNA synthetases specific for glutamate and those specific for glutamine. A comparison of the primary structures of the three tRNAs efficiently charged by the B. subtilis glutamyl-tRNA synthetase with those of E. coli tRNAGlu and tRNAGln2 suggests that this enzyme interacts with the G64-C50 or G64-U50 in the T psi stem of its tRNA substrates.
机译:在存在或不存在其调节因子的情况下,枯草芽孢杆菌的单体谷氨酰胺基-tRNA合成酶可以与谷氨酸一起从枯草芽孢杆菌的tRNAGlu和tRNAGln和tRNAGln1体外进行氨基酰化,但不能与大肠杆菌的tRNAGln2或tRNAGlu进行氨基酰化。在这些同源或异源氨基酰化反应中,酶对其底物的Km和Vmax值非常相似。该酶是唯一报道的具有正常动力学参数的氨酰化两个编码不同氨基酸的tRNA物种,并在正常的氨酰化条件下以高速率对异源tRNA进行酰化的唯一氨酰基tRNA合成酶。该酶对其tRNAGlu和tRNAGln底物的特异性异常缺乏,以及与大肠杆菌谷氨酰胺基和谷氨酰胺基tRNA合成酶共有的结构和催化特性,表明在氨酰基tRNA合成酶特异性之间存在紧密的进化联系。谷氨酸盐和谷氨酰胺专用盐。枯草芽孢杆菌谷氨酰-tRNA合成酶与大肠杆菌tRNAGlu和tRNAGln2高效充电的三个tRNA的一级结构的比较表明,该酶与T.psi茎中的G64-C50或G64-U50相互作用。其tRNA底物。

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