首页> 外文期刊>Mutation Research: International Journal on Mutagenesis, Chromosome Breakage and Related Subjects >Starvation-associated mutation in Escherichia coli strains defective in transcription repair coupling factor.
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Starvation-associated mutation in Escherichia coli strains defective in transcription repair coupling factor.

机译:大肠杆菌菌株中与饥饿相关的突变在转录修复偶联因子方面存在缺陷。

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When E. coli WU3610 (tyrA14 ochre) bacteria are starved of tyrosine on the surface of glucose-salts agar plates, there is a progressive accumulation of slow growing prototrophic mutants that are neither revertants at the ochre codon nor any of the well characterised tRNA ochre suppressors. Isogenic derivatives defective in transcription repair coupling factor (mfd) showed normal starvation-associated mutation (SAM). WU361045, the original mfd strain, showed very much reduced SAM. At 37 degrees C this was associated with progressive loss of viability on plates but the defect in SAM was not due to loss of viability since incubation at 27 degrees C or addition of catalase prevented the loss of viability but did not restore SAM. Furthermore, mutants could not be rescued from starved WU361045 populations by a short period of tyrosine supplementation arguing that WU361045 was defective not in the survival of starvation-associated mutants, but in their formation. The SAM defect in WU361045 was not complemented by the katF gene on a low copy number plasmid. It is concluded that WU361045 carries an unidentified mutation, not under katF control, that greatly reduces SAM. If SAM is attributable to a spontaneously occurring DNA lesion, the latter is unlikely to be formed by hydrogen peroxide or active species derived from it.
机译:当大肠杆菌WU3610(tyrA14 ochre)细菌在葡萄糖盐琼脂平板的表面上缺乏酪氨酸时,会逐渐积累缓慢生长的原养型突变体,这些突变体既不是the石密码子的回复子,也不是任何特征明确的tRNA cher石抑制器。转录修复偶联因子(mfd)有缺陷的同基因衍生物显示正常的饥饿相关突变(SAM)。原始mfd菌株WU361045显示出大大降低的SAM。在37摄氏度时,这与平板上的活力逐渐丧失有关,但SAM的缺陷并不是由于活力的丧失所致,因为在27摄氏度下孵育或添加过氧化氢酶阻止了活力的丧失,但并未恢复SAM。此外,无法通过短期补充酪氨酸从饥饿的WU361045群体中拯救突变体,理由是WU361045并非与饥饿相关的突变体的存活而是其形成方面的缺陷。 WU361045中的SAM缺陷未与低拷贝数质粒上的katF基因互补。结论是,WU361045携带不受katF控制的未知突变,可大大降低SAM。如果SAM可归因于自然发生的DNA损伤,则后者不太可能由过氧化氢或由其衍生的活性物质形成。

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