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首页> 外文期刊>Applied and Environmental Microbiology >Complementation of Listeria monocytogenes Null Mutants with Selected Listeria seeligeri Virulence Genes Suggests Functional Adaptation of Hly and PrfA and Considerable Diversification of prfA Regulation in L. seeligeri
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Complementation of Listeria monocytogenes Null Mutants with Selected Listeria seeligeri Virulence Genes Suggests Functional Adaptation of Hly and PrfA and Considerable Diversification of prfA Regulation in L. seeligeri

机译:与李斯特菌李斯特菌毒力基因互补的单核细胞增生李斯特菌空突变体表明,Lly seeligeri中Hly和PrfA的功能适应和prfA调控的多样化

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While Listeria seeligeri and L. monocytogenes contain the main Listeria virulence gene cluster, only L. monocytogenes is considered an intracellular pathogen. Initial evolutionary analyses showed that the virulence genes prfA, hly, and plcA are conserved in L. seeligeri, with specific Hly and PrfA amino acid residues showing evidence for positive selection in L. seeligeri. Our data also show that temperature-dependent transcript patterns for prfA, which encodes a transcriptional regulator of virulence genes, differed between L. monocytogenes and L. seeligeri. To further investigate the divergence of virulence gene function and regulation, L. seeligeri prfA (prfALS), hly (hlyLS), and plcA (plcALS), as well as prfALS constructs with different prfA promoter regions, were introduced into appropriate L. monocytogenes null mutants. Only when prfALS was under the control of the L. monocytogenes prfA promoters (P1- and P2prfA) (P1P2LM prfALS) was prfALS able to fully complement the ΔprfALM deletion. hlyLS introduced into an L. monocytogenes background under its native promoter showed transcript levels similar to those of hlyLM and was able to partially restore L. monocytogenes wild-type-level hemolysis and intracellular growth, even though HlyLM and HlyLS showed distinct patterns of cell- and supernatant-associated hemolytic activities. Our data indicate that (i) regulation of prfA expression differs between L. monocytogenes and L. seeligeri, although hly transcription is temperature dependent in both species, and (ii) PrfA and Hly functions are largely, but not fully, conserved between L. seeligeri and L. monocytogenes. Virulence gene homologues and their expression thus appear to have adapted to distinct but possibly related functions in these two species.
机译:虽然李斯特菌和单核细胞增生李斯特菌包含主要的李斯特菌毒力基因簇,但只有单核细胞增生李斯特菌被认为是细胞内病原体。最初的进化分析表明,毒力基因prfA,hly和plcA在Seeligeri乳杆菌中是保守的,特定的Hly和PrfA氨基酸残基显示出在Seeligeri乳杆菌中有阳性选择的证据。我们的数据还表明,prfA的温度依赖性转录模式(编码毒力基因的转录调节因子)在单核细胞增生李斯特菌和Seeligeri乳杆菌之间有所不同。为了进一步研究毒力基因功能和调控的差异,将L. seeligeri prfA(prfALS),hly(hlyLS)和plcA(plcALS)以及具有不同prfA启动子区域的prfALS构建体引入合适的单核细胞增生李斯特菌中。突变体。仅当prfALS受单核细胞增生李斯特氏菌的控制时,prfA启动子(P1-和P2prfA)(P1P2LM prfALS)才能够完全补充ΔprfALM缺失。在单核细胞增生李斯特氏菌天然启动子下引入单核细胞增生李斯特氏菌背景的hlyLS,其转录水平与hlyLM相似,即使HlyLM和HlyLS表现出明显的细胞分化模式,也能够部分恢复单核细胞增生李斯特菌的野生型溶血和细胞内生长。和上清液相关的溶血活性。我们的数据表明(i)单核细胞增生李斯特菌和Seeligeri乳杆菌之间prfA表达的调节是不同的,尽管hly转录在两个物种中都取决于温度,并且(ii)PrfA和Hly的功能在L之间很大程度上但不完全保守。 seeligeri和单核细胞增生李斯特菌。因此,毒力基因同源物及其表达似乎已经适应了这两个物种中独特但可能相关的功能。

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