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首页> 外文期刊>Microbiology >Characterization of the genetic locus responsible for the production of ABP-118, a novel bacteriocin produced by the probiotic bacterium Lactobacillus salivarius subsp. salivarius UCC118
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Characterization of the genetic locus responsible for the production of ABP-118, a novel bacteriocin produced by the probiotic bacterium Lactobacillus salivarius subsp. salivarius UCC118

机译:负责ABP-118产生的遗传基因座的表征,由益生菌乳酸杆菌患者产生的新型菌丝。 Salivarius UCC118

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ABP-118, a small heat-stable bacteriocin produced by Lactobacillus salivarius subsp. salivarius UCC118, a strain isolated from the ileal–caecal region of the human gastrointestinal tract, was purified to homogeneity. Using reverse genetics, a DNA fragment specifying part of ABP-118 was identified on a 10769?bp chromosomal region. Analysis of this region revealed that ABP-118 was a Class IIb two-peptide bacteriocin composed of Abp118α, which exhibited the antimicrobial activity, and Abp118β, which enhanced the antimicrobial activity. The gene conferring strain UCC118 immunity to the action of ABP-118, abpIM, was identified downstream of the abp118β gene. Located further downstream of abp118β, several ORFs were identified whose deduced proteins resembled those of proteins involved in bacteriocin regulation and secretion. Heterologous expression of ABP-118 was achieved in Lactobacillus plantarum, Lactococcus lactis and Bacillus cereus. In addition, the abp118 locus encoded an inducing peptide, AbpIP, which was shown to play a role in the regulation of ABP-118 production. This novel bacteriocin is, to the authors’ knowledge, the first to be isolated from a known human probiotic bacterium and to be characterized at the genetic level.
机译:ABP-118,由枸杞毒蕈王氏菌株生产的小型热稳定的菌丝。唾液ucc118,从人胃肠道的髂骨 - 颈部分离的菌株被纯化为均匀性。使用反向遗传学,在10769〜BP染色体区域上鉴定了指定ABP-118的一部分的DNA片段。该区域的分析表明,ABP-118是由ABP118α组成的IIB类双肽菌,其表现出抗微生物活性,ABP118β,其增强了抗微生物活性。在ABP118β基因的下游鉴定了赋予ABP-118,ABPIM的作用的菌株UCC118的基因。位于ABP118β的进一步下游,鉴定了几个ORF,其推导的蛋白质类似于患有细菌调控和分泌的蛋白质。在乳酸杆菌,乳酸乳杆菌,乳酸乳杆菌和芽孢杆菌中实现了ABP-118的异源表达。此外,ABP118基因座编码了诱导肽,ABPIP,其显示在ABP-118生产的调节中起作用。这种新的细菌素是向作者的知识,首先从已知的人益生菌细菌中分离并以遗传水平表征。

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