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Cloning of rel from Listeria monocytogenes as an Osmotolerance Involvement Gene

机译:单核细胞增生李斯特菌相关基因的克隆作为渗透调节基因

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Transposon insertional mutants of Listeria monocytogenes were constructed to identify genes involved in osmotolerance, and one mutant that showed reduced growth under high osmotic pressure was obtained. The cloned gene from the transposon insertion site of the mutant, named rel, was 2,214 bp in length and had very high homology to relA of Bacillus subtilis, which encodes guanosine tetraphosphate (ppGpp) and guanosine pentaphosphate (pppGpp) [collectively designated (p)ppGpp] synthetase during stringent response. The mutant showed a deficiency in (p)ppGpp accumulation. In the parental strain, the amount of intracellular (p)ppGpp was not increased after an osmotic upshift but was slightly decreased compared with the level before the upward shift. The reduced osmotolerance of the mutant was restored to a level almost equal to that of the parent strain when the chromosomal region that included rel of L. monocytogenes was introduced into the mutant. After exposure to methyl glucoside, the rel mutant accumulated (p)ppGpp at a higher level than the basal level and partially restored the ability to grow in NaCl-supplemented brain heart infusion broth. The mutant was found to grow in chemically defined minimal medium supplemented with glycine betaine or carnitine, so-called compatible solutes, and 4% NaCl. Our results suggest that the appropriate intracellular concentration of (p)ppGpp is essential for full osmotolerance in L. monocytogenes and that its mechanism is different from that for the accumulation of compatible solutes.
机译:构建单核细胞增生李斯特氏菌的转座子插入突变体,以鉴定参与渗透压的基因,并获得了一种在高渗透压下生长减少的突变体。从突变体的转座子插入位点克隆的基因名为rel,长度为2214 bp,与枯草芽孢杆菌的relA具有非常高的同源性,后者编码四磷酸鸟嘌呤(ppGpp)和五磷酸鸟苷(pppGpp)[统称为(p) ppGpp]合成酶在严格反应期间。该突变体显示(p)ppGpp积累不足。在亲本菌株中,渗透上移后细胞内(p)ppGpp的量没有增加,但是与上移前的水平相比略有减少。当将包括rel.monocytogenes rel。的单核细胞增生李斯特氏菌的染色体区域引入突变体中时,突变体的降低的渗透压耐受性恢复到几乎等于亲本菌株的水平。暴露于甲基葡糖苷后,rel突变体以高于基础水平的水平积累(p)ppGpp,并部分恢复了在NaCl补充的脑心浸液中的生长能力。发现该突变体在补充有甘氨酸甜菜碱或肉碱,所谓的相容性溶质和4%NaCl的化学成分明确的基本培养基中生长。我们的结果表明,适当的细胞内浓度(p)ppGpp对于单核细胞增生李斯特氏菌的完全渗透耐受至关重要,其机制与相容性溶质的积累不同。

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