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An unexpected absence of queuosine modification in the tRNAs of an Escherichia coli B strain

机译:在大肠杆菌B株的TrNA中意外缺乏批量修饰

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The post-transcriptional processing of tRNAs decorates them with a number of modified bases important for their biological functions. Queuosine, found in the tRNAs with GUN anticodons (Asp, Asn, His, Tyr), is an extensively modified base whose biosynthetic pathway is still unclear. In this study, it was observed that the tRNATyr from Escherichia coli B105 (a B strain) migrated faster than that from E. coli CA274 (a K-12 strain) on acid urea gels. The organization of tRNATyr genes in E. coli B105 was found to be typical of the B strains. Subsequent analysis of tRNATyr and tRNAHis from several strains of E. coli on acid urea gels, and modified base analysis of tRNA preparations enriched for tRNATyr, showed that E. coli B105 lacked queuosine in its tRNAs. However, the lack of queuosine in tRNAs was not a common feature of all E. coli B strains. The tgt and queA genes in B105 were shown to be functional by their ability to complement tgt and queA mutant strains. These observations suggested a block at the step of the biosynthesis of preQ1 (or preQ0) in the B105 strain. Interestingly, a multicopy vector harbouring a functional tgt gene was toxic to E. coli B105 but not to CA274. Also, in mixed cultures, E. coli B105 was readily competed out by the CA274 strain. The importance of these observations and this novel strain (E. coli B105) in unravelling the mechanism of preQ1 or preQ0 biosynthesis is discussed.
机译:TRNA的后转录后处理用一些对其生物功能重要的修改基础装饰它们。在带枪的TrNA中发现的Queuosine(Asp,Asn,His,Tyr)中发现,是一种广泛改性的基础,其生物合成途径尚不清楚。在该研究中,观察到来自大肠杆菌大肠杆菌B105(A B菌株)的Trnatty迁移得比酸性尿素凝胶的大肠杆菌Ca274(A K-12菌株)更快地迁移。发现大肠杆菌B105中的Trnatyr基因组织是典型的B株。随后分析来自酸性尿素凝胶的几种大肠杆菌菌株的Trnatyr和Trnahis,以及富含Trnatyr的TRNA制剂的改性基础分析,显示了大肠杆菌B105在其TRNA中缺乏批量毒素。然而,TrNAs中缺乏批量生产不是所有大肠杆菌B株的常见特征。 B105中的TGT和QUEA基因被其补充TGT和Quea突变菌株的能力是官能的。这些观察结果在B105菌株中的预Q1(或预Q0)的生物合成步骤中提出了块。有趣的是,含有功能性TGT基因的多拷贝载体对大肠杆菌B105毒性,但不含CO274。此外,在混合培养物中,通过Ca274菌株容易地竞争大肠杆菌B105。讨论了这些观察结果和这种新的菌株(大肠杆菌B105)在解开预提出的方法或预Q0生物合成的机制中的重要性。

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