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短乳杆菌 174A 中与细菌素产生和自身抗性相关基因的表达受两种调控蛋白的调控。

Expression of Genes Involved in Bacteriocin Production and Self-Resistance in Lactobacillus brevis 174A Is Mediated by Two Regulatory Proteins.

机构信息

Department of Probiotic Science for Preventive Medicine, Graduate School of Biomedical and Health Sciences, Hiroshima University, Hiroshima, Japan.

Department of Microbiology, Graduate School of Biomedical and Health Sciences, Hiroshima University, Hiroshima, Japan.

出版信息

Appl Environ Microbiol. 2018 Mar 19;84(7). doi: 10.1128/AEM.02707-17. Print 2018 Apr 1.

Abstract

We have previously shown that the lactic acid bacterium 174A, isolated from fruit, produces a bacteriocin designated brevicin 174A, which is comprised of two antibacterial polypeptides (designated brevicins 174A-β and 174A-γ). We have also found a gene cluster, composed of eight open reading frames (ORFs), that contains genes for the biosynthesis of brevicin 174A, self-resistance to its own bacteriocin, and two transcriptional regulatory proteins. Some lactic acid bacterial strains have a system to start the production of bacteriocin at an adequate stage of growth. Generally, the system consists of a membrane-bound histidine protein kinase (HPK) that senses a specific environmental stimulus and a corresponding response regulator (RR) that mediates the cellular response. We have previously shown that although the HPK- and RR-encoding genes are not found on the brevicin 174A biosynthetic gene cluster in the 174A strain, two putative regulatory genes, designated and , are in the gene cluster. In the present study, we demonstrate that the expression of brevicin 174A production and self-resistance is positively controlled by two transcriptional regulatory proteins, designated BreD and BreG. BreD is expressed together with BreE as the self-resistance determinant of 174A. DNase I footprinting analysis and a promoter assay demonstrated that BreD binds to the promoter as a positive autoregulator. The present study also demonstrates that BreG, carrying a transmembrane domain, binds to the common promoter of and , encoding brevicins 174A-β and 174A-γ, respectively, for positive regulation. The problem of the appearance of bacteria that are resistant to practical antibiotics and the increasing demand for safe foods have increased interest in replacing conventional antibiotics with bacteriocin produced by the lactic acid bacteria. This antibacterial substance can inhibit the growth of pathogenic bacteria without side effects on the human body. The bacteriocin that is produced by a -derived strain inhibits the growth of pathogenic bacteria such as , , and In general, lactic acid bacterial strains have a system to start the production of bacteriocin at an adequate stage of growth, which is called a quorum-sensing system. The system consists of a membrane-bound histidine protein kinase that senses a specific environmental stimulus and a corresponding response regulator that mediates the cellular response. The present study demonstrates that the expression of the genes encoding bacteriocin biosynthesis and the self-resistance determinant is positively controlled by two transcriptional regulatory proteins.

摘要

我们之前已经证明,从水果中分离出的乳酸杆菌 174A 会产生一种名为 brevicin 174A 的细菌素,它由两种具有抗菌活性的多肽(分别命名为 brevicin 174A-β和 brevicin 174A-γ)组成。我们还发现了一个由八个开放阅读框(ORFs)组成的基因簇,该基因簇包含 brevicin 174A 的生物合成基因、对自身细菌素的自我抗性以及两个转录调控蛋白的基因。一些乳酸菌菌株有一个系统,可以在生长的适当阶段开始产生细菌素。一般来说,该系统由一个膜结合的组氨酸蛋白激酶(HPK)组成,该激酶可以感知特定的环境刺激,而相应的反应调节剂(RR)则介导细胞反应。我们之前已经表明,尽管 174A 菌株的 brevicin 174A 生物合成基因簇中没有发现 HPK 和 RR 编码基因,但两个假定的调节基因,命名为 和 ,在基因簇中。在本研究中,我们证明了 brevicin 174A 产生和自我抗性的表达受到两个转录调控蛋白 BreD 和 BreG 的正向调控。BreD 与 BreE 一起作为 174A 的自我抗性决定因素表达。DNase I 足迹分析和启动子测定表明,BreD 作为正自调节因子结合到 启动子上。本研究还表明,携带跨膜结构域的 BreG 结合到 和 的共同启动子上,分别编码 brevicin 174A-β和 brevicin 174A-γ,用于正调控。具有实际抗生素抗性的细菌的出现问题以及对安全食品需求的增加,增加了用乳酸菌产生的细菌素来替代传统抗生素的兴趣。这种抗菌物质可以抑制致病菌的生长,而对人体没有副作用。由 衍生的 菌株产生的细菌素可以抑制 、 、 和 等致病菌的生长。一般来说,乳酸菌菌株有一个系统,可以在生长的适当阶段开始产生细菌素,这被称为群体感应系统。该系统由一个膜结合的组氨酸蛋白激酶组成,该激酶可以感知特定的环境刺激,而相应的反应调节剂则介导细胞反应。本研究表明,细菌素生物合成和自我抗性决定因素编码基因的表达受到两个转录调控蛋白的正向控制。

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