首页> 美国卫生研究院文献>Applied and Environmental Microbiology >pbp2229-Mediated Nisin Resistance Mechanism in Listeria monocytogenes Confers Cross-Protection to Class IIa Bacteriocins and Affects Virulence Gene Expression
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pbp2229-Mediated Nisin Resistance Mechanism in Listeria monocytogenes Confers Cross-Protection to Class IIa Bacteriocins and Affects Virulence Gene Expression

机译:pbp2229介导的单核细胞增生性李斯特菌的乳酸链球菌抗性机制赋予IIa类细菌素交叉保护作用并影响毒力基因表达。

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摘要

It was previously shown that enhanced nisin resistance in some mutants was associated with increased expression of three genes, pbp2229, hpk1021, and lmo2487, encoding a penicillin-binding protein, a histidine kinase, and a protein of unknown function, respectively. In the present work, we determined the direct role of the three genes in nisin resistance. Interruption of pbp2229 and hpk1021 eliminated the nisin resistance phenotype. Interruption of hpk1021 additionally abolished the increase in pbp2229 expression. The results indicate that this nisin resistance mechanism is caused directly by the increase in pbp2229 expression, which in turn is brought about by the increase in hpk1021 expression. We also found a degree of cross-protection between nisin and class IIa bacteriocins and investigated possible mechanisms. The expression of virulence genes in one nisin-resistant mutant and two class IIa bacteriocin-resistant mutants of the same wild-type strain was analyzed, and each mutant consistently showed either an increase or a decrease in the expression of virulence genes (prfA-regulated as well as prfA-independent genes). Although the changes mostly were moderate, the consistency indicates that a mutant-specific change in virulence may occur concomitantly with bacteriocin resistance development.
机译:先前显示,在某些突变体中增强的乳链菌肽抗性与分别编码青霉素结合蛋白,组氨酸激酶和功能未知的三个基因pbp2229,hpk1021和lmo2487的表达增加有关。在目前的工作中,我们确定了这三个基因在乳链菌肽抗性中的直接作用。 pbp2229和hpk1021的中断消除了乳链菌肽抗性表型。 hpk1021的中断还消除了pbp2229表达的增加。结果表明,这种乳酸链球菌素抗性机制直接由pbp2229表达的增加引起,而pbp2229表达的增加又由hpk1021表达的增加引起。我们还发现了乳链菌肽和IIa类细菌素之间的交叉保护程度,并研究了可能的机制。分析了同一野生型菌株的一个耐乳酸链球菌抗性突变体和两个耐IIa类细菌素抗性突变体中的毒力基因表达,并且每个突变体始终显示出毒力基因表达的增加或减少(prfA调节以及不依赖prfA的基因)。尽管变化大多是中等的,但一致性表明毒力的突变体特异性变化可能与细菌素耐药性发展同时发生。

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