首页> 外文期刊>Journal of Molecular Biology >TRANSCRIPTIONAL ANALYSIS OF THE CAULOBACTER 4.5 S RNA FFS GENE AND THE PHYSIOLOGICAL BASIS OF AN FFS MUTANT WITH A TS PHENOTYPE
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TRANSCRIPTIONAL ANALYSIS OF THE CAULOBACTER 4.5 S RNA FFS GENE AND THE PHYSIOLOGICAL BASIS OF AN FFS MUTANT WITH A TS PHENOTYPE

机译:大肠杆菌4.5 S RNA FFS基因的转录分析及TS型FFS突变体的生理基础

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A temperature-sensitive (ts) mutation in the ffs gene, encoding 4.5 S RNA, gives rise to cell division and DNA replication defects in Caulobacter crescentus. The ffs gene is transcribed throughout the cell-cycle and is transcribed at similar rates in mutant (ffs 36) and wild-type strains, but in the mutant the 4.5 S RNA is unstable leading to lower 4.5 S RNA levels. The ffs36 phenotype results from a single base change in one of the non-conserved stems of the mature RNA, and is completely rescued by a compensating mutation in the opposite strand, providing confirmation of the predicted secondary structure of the 4.5 S RNA. The Caulobacter ffs gene was shown to be functionally comparable to the Escherichia coli ffs gene by complementation. Comparison of the ffs36 strain to a ts secA strain of Caulobacter, also having cell-cycle and DNA replication phenotypes, showed that both exhibit a permanent induction of a heat shock response at the restrictive temperature. To explain the phenotype of both the secA and ffs36 strains, we propose that a cell-cycle checkpoint prevents further progression through the cell-cycle in response to increased intracellular levels of heat shock and misfolded proteins. (C) 1997 Academic Press Limited. [References: 42]
机译:ffs基因中的温度敏感(ts)突变编码4.5 S RNA,导致新月形杆菌中的细胞分裂和DNA复制缺陷。 ffs基因在整个细胞周期中均被转录,并在突变株(ffs 36)和野生株中以相似的速率转录,但在突变株中4.5 S RNA不稳定,导致4.5 S RNA水平降低。 ffs36表型由成熟RNA的一个非保守茎中的单个碱基改变产生,并通过相反链中的补偿性突变完全拯救,从而证实了4.5 S RNA的预测二级结构。通过互补,证明杆状杆菌ffs基因在功能上与大肠杆菌ffs基因相当。将ffs36菌株与Caulobacter ts secA菌株(也具有细胞周期和DNA复制表型)进行比较,结果表明两者均在限制温度下永久诱导了热激反应。为了解释secA和ffs36菌株的表型,我们提出细胞周期检查点可防止响应于细胞内热休克水平增加和蛋白折叠错误而通过细胞周期进一步发展。 (C)1997 Academic Press Limited。 [参考:42]

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