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tRNA(3Leu)受体茎中的单个碱基变化使大肠杆菌对钙调蛋白抑制剂48/80产生抗性。

A single base change in the acceptor stem of tRNA(3Leu) confers resistance upon Escherichia coli to the calmodulin inhibitor, 48/80.

作者信息

Chen M X, Bouquin N, Norris V, Casarégola S, Séror S J, Holland I B

机构信息

Department of Genetics, University of Leicester, UK.

出版信息

EMBO J. 1991 Oct;10(10):3113-22. doi: 10.1002/j.1460-2075.1991.tb07865.x.

Abstract

We have isolated several classes of spontaneous mutants resistant to the calmodulin inhibitor 48/80 which inhibits cell division in Escherichia coli K12. Several mutants were also temperature sensitive for growth and this property was exploited to clone a DNA fragment from an E. coli gene library restoring growth at 42 degrees C and drug sensitivity at 30 degrees C in one such mutant. Physical and genetic mapping confirmed that both the mutation and the cloned DNA were located at 15.5 min on the E. coli chromosome at a locus designated feeB. By subcloning, complementation analysis and sequencing, the feeB locus was identified as identical to the tRNA(CUALEU) gene. When the mutant locus was isolated and sequenced, the mutation was confirmed as a single base change, C to A, at position 77 in the acceptor stem of this rare Leu tRNA. In other studies we obtained evidence that this mutant tRNA, recognizing the rare Leu codon, CUA, was defective in translation at both permissive and non-permissive temperatures. The feeB1 mutant is defective in division and shows a reduced growth rate at non-permissive temperature. We discuss the possibility that the mutant tRNA(3Leu) is limiting for the synthesis of a polypeptide(s), requiring several CUA codons for translation which in turn regulates in some way the level or activity of the drug target, a putative cell cycle protein.

摘要

我们分离出了几类对钙调蛋白抑制剂48/80具有抗性的自发突变体,该抑制剂可抑制大肠杆菌K12中的细胞分裂。有几个突变体对温度敏感,利用这一特性从大肠杆菌基因文库中克隆出一个DNA片段,该片段可使其中一个突变体在42℃恢复生长,并在30℃恢复药物敏感性。物理和遗传图谱分析证实,突变和克隆的DNA都位于大肠杆菌染色体上15.5分钟处的一个名为feeB的位点。通过亚克隆、互补分析和测序,feeB位点被确定与tRNA(CUALEU)基因相同。当分离出突变位点并进行测序时,确认该突变是这种罕见亮氨酸tRNA接受茎中第77位的单个碱基变化,从C变为A。在其他研究中,我们获得的证据表明,这种识别罕见亮氨酸密码子CUA的突变tRNA在允许温度和非允许温度下的翻译过程中均存在缺陷。feeB1突变体在分裂方面存在缺陷,并且在非允许温度下生长速率降低。我们讨论了突变tRNA(3Leu)可能限制了一种多肽的合成,该多肽的翻译需要几个CUA密码子,进而以某种方式调节药物靶点(一种假定的细胞周期蛋白)的水平或活性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a88c/453029/804d01c6fd45/emboj00108-0377-a.jpg

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