Yamao F, Inokuchi H, Normanly J, Abelson J, Ozeki H
Department of Biophysics, Faculty of Science, Kyoto University, Japan.
Jpn J Genet. 1988 Jun;63(3):251-8. doi: 10.1266/jjg.63.251.
Among the mischarging mutants isolated from strains with Su+2 glutamine tRNA, two double-mutants, A37A29 and A37C38, have been suggested to insert tryptophan at the UAG amber mutation site as determined by the suppression patterns of a set of tester mutants of bacteria and phages (Yamao et al., 1988). In this paper, we screened temperature sensitive mutants of E. coli in which the mischarging suppression was abolished even at the permissive temperature. Four such mutants were obtained and they were identified as the mutants of a structural gene for tryptophanyl-tRNA synthetase (trpS). Authentic trpS mutations, such as trpS5 or trpS18, also restricted the mischarging suppression. These results strongly support the previous prediction that the mutant tRNAs of Su+2, A37A29 and A37C38, are capable of interacting with tryptophanyl-tRNA synthetase and being misaminoacylated with tryptophan in vivo. However, in an assay to determine the specificity of the mutant glutamin tRNAs, we detected predominantly glutamine, but not any other amino acid, being inserted at an amber codon in vivo to any significant degree. We conclude that the mutant tRNAs still accept mostly glutamine, but can accept tryptophan in an extent for mischarging suppression. Since the amber suppressors of Su+7 tryptophan tRNA and the mischarging mutants of Su+3 tyrosine tRNA are charged with glutamine, structural similarity among the tRNAs for glutamine, tryptophan and tyrosine is discussed.
在从具有Su+2谷氨酰胺tRNA的菌株中分离出的错载突变体中,根据一组细菌和噬菌体测试突变体的抑制模式确定,两个双突变体A37A29和A37C38被认为在UAG琥珀突变位点插入色氨酸(Yamao等人,1988年)。在本文中,我们筛选了大肠杆菌的温度敏感突变体,其中即使在允许温度下错载抑制也被消除。获得了四个这样的突变体,它们被鉴定为色氨酰-tRNA合成酶(trpS)结构基因的突变体。真正的trpS突变,如trpS5或trpS18,也限制了错载抑制。这些结果有力地支持了先前的预测,即Su+2、A37A29和A37C38的突变tRNA能够与色氨酰-tRNA合成酶相互作用,并在体内被色氨酸错误氨酰化。然而,在测定突变谷氨酰胺tRNA特异性的试验中,我们在体内检测到主要是谷氨酰胺而非任何其他氨基酸在琥珀密码子处有显著程度的插入。我们得出结论,突变tRNA仍然主要接受谷氨酰胺,但在错载抑制程度上可以接受色氨酸。由于Su+7色氨酸tRNA的琥珀抑制子和Su+3酪氨酸tRNA的错载突变体都被谷氨酰胺充电,因此讨论了谷氨酰胺、色氨酸和酪氨酸tRNA之间的结构相似性。