首页> 外文OA文献 >Deletion of the Escherichia coli pseudouridine synthase gene truB blocks formation of pseudouridine 55 in tRNA in vivo, does not affect exponential growth, but confers a strong selective disadvantage in competition with wild-type cells.
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Deletion of the Escherichia coli pseudouridine synthase gene truB blocks formation of pseudouridine 55 in tRNA in vivo, does not affect exponential growth, but confers a strong selective disadvantage in competition with wild-type cells.

机译:大肠杆菌假尿苷合酶基因truB的缺失在体内阻止tRNA中假尿苷55的形成,不影响指数增长,但在与野生型细胞竞争中具有很强的选择性劣势。

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摘要

Previous work from this laboratory (Nurse et al., RNA, 1995, 1:102-112) established that TruB, a pseudouridine (psi) synthase from Escherichia coli, was able to make psi55 in tRNA transcripts but not in transcripts of full-length or fragmented 16S or 23S ribosomal RNAs. By deletion of the truB gene, we now show that TruB is the only protein in E. coli able to make psi55 in vivo. Lack of TruB and psi55 did not affect the exponential growth rate but did confer a strong selective disadvantage on the mutant when it was competed against wild-type. The negative selection did not appear to be acting at either the exponential or stationary phase. Transformation with a plasmid vector conferring carbenicillin resistance and growth in carbenicillin markedly increased the selective disadvantage, as did growth at 42 degrees C, and both together were approximately additive such that three cycles of competitive growth sufficed to reduce the mutant strain to approximately 0.2% of its original value. The most striking finding was that all growth effects could be reversed by transformation with a plasmid carrying a truB gene coding for a D48C mutation in TruB. Direct analysis showed that this mutant did not make psi55 under the conditions of the competition experiment. Therefore, the growth defect due to the lack of TruB must be due to the lack of some other function of the protein, possibly an RNA chaperone activity, but not to the absence of psi55.
机译:该实验室以前的工作(Nurse等,RNA,1995,1:102-112)确定TruB是一种来自大肠杆菌的假尿苷(psi)合酶,能够在tRNA转录本中产生psi55,而在全长度或片段化的16S或23S核糖体RNA。通过删除truB基因,我们现在显示TruB是大肠杆菌中唯一能够在体内产生psi55的蛋白质​​。 TruB和psi55的缺乏不会影响指数增长率,但是当突变体与野生型竞争时,确实给突变体带来了强烈的选择性劣势。负选择似乎没有作用于指数或平稳阶段。用质粒载体进行转化,赋予羧苄青霉素抗性和羧苄青霉素的生长显着增加了选择性的不利条件,在42摄氏度下的生长同样如此,并且两者都近似相加,因此三个竞争性生长周期足以将突变菌株降低至约0.2%它的原始值。最引人注目的发现是,通过携带带有编码TruB中D48C突变的truB基因的质粒转化,可以逆转所有生长效应。直接分析表明该突变体在竞争实验条件下不能产生psi55。因此,由于缺少TruB而导致的生长缺陷必须归因于蛋白质缺乏某种其他功能,可能是RNA伴侣活性,而不是由于缺少psi55。

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