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首页> 外文期刊>Journal of Biosciences >Allele-specific suppression of the temperature sensitivity of fitA/fitB mutants of Escherichia coli by a new mutation (fitC4): isolation, characterization and its implications in transcription control
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Allele-specific suppression of the temperature sensitivity of fitA/fitB mutants of Escherichia coli by a new mutation (fitC4): isolation, characterization and its implications in transcription control

机译:新突变(fitC4)的等位基因特异性抑制大肠杆菌fitA / fitB突变体的温度敏感性:分离,鉴定及其在转录控制中的意义

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The temperature sensitive transcription defective mutant of Escherichia coli originally called fitA76 has been shown toharbour two missense mutations namely pheS5 and fit95. In order to obtain a suppressor of fitA76, possibly mapping in rpoD locus, a Ts+ derivative (JV4) was isolated from a fitA76 mutant. It was found that JV4 neither harbours the lesions present in the original fitA76 nor a suppressor that maps in or near rpoD. We show that JV4 harbours a modified form of fitA76 (designated fitA76*) together with its suppressor. The results presented here indicate that the fit95 lesion is intact in the fitA76* mutant and the modification should be at the position of pheS5. Based on the cotransduction of the suppressor mutation and/or its wild type allele with pps, aroD and zdj-3124::Tn10 kan we have mapped its location to 39.01 min on the E. coli chromosome. We tentatively designate the locus defined by this new extragenic suppressor as fitC and the suppressor allele as fitC4. While fitC4 could suppress the Ts phenotype of fitA76* present in JV4, it fails to suppress the Ts phenotype of the original fitA76 mutant (harbouring pheS5 and fit95). Also fitC4 could suppress the Ts phenotype of a strain harbouring only pheS5. Interestingly, the fitC4 Ts phenotype could also be suppressed by fit95. The pattern of decay of pulse labelled RNA in the strains harbouring fitC4 and the fitA76* resembles that of the original fitA76 mutant implying a transcription defect similar to that of fitA76 in both these mutants. The implications of these findings with special reference to transcription control by Fit factors in vivo are discussed.
机译:大肠杆菌的温度敏感转录缺陷突变体最初称为fitA76,已显示出具有两个错义突变,即pheS5和fit95。为了获得fitA76的抑制剂,可能在rpoD基因座中作图,从fitA76突变体中分离了Ts +衍生物(JV4)。发现JV4既不保留原始fitA76中存在的损伤,也不隐藏在rpoD内或附近定位的抑制子。我们显示JV4连同其抑制器一起包含了fitA76的改进形式(指定为fitA76 *)。此处显示的结果表明,在fitA76 *突变体中,fit95损伤是完整的,且修饰应在pheS5的位置。基于抑制突变和/或其野生型等位基因与pps,aroD和zdj-3124 :: Tn10 kan的共转导,我们将其位置定位在大肠杆菌染色体上39.01分钟。我们暂时将由这种新的外源抑制子定义的位点命名为fitC,将抑制子等位基因定义为fitC4。尽管fitC4可以抑制JV4中存在的fitA76 *的Ts表型,但它不能抑制原始fitA76突变体(拥有pheS5和fit95)的Ts表型。 fitC4还可以抑制仅携带pheS5的菌株的Ts表型。有趣的是,fitC4 Ts表型也可以被fit95抑制。在带有fitC4和fitA76 *的菌株中,脉冲标记的RNA的衰变模式类似于原始fitA76突变体,这意味着在这两个突变体中转录缺陷均与fitA76相似。讨论了这些发现的含义,特别涉及在体内通过Fit因子进行转录控制。

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