首页> 外文期刊>BMC Microbiology >Purification and genetic characterization of gassericin E, a novel co-culture inducible bacteriocin from Lactobacillus gasseri EV1461 isolated from the vagina of a healthy woman
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Purification and genetic characterization of gassericin E, a novel co-culture inducible bacteriocin from Lactobacillus gasseri EV1461 isolated from the vagina of a healthy woman

机译:Gassericin E的纯化和遗传特性,一种从健康女性的阴道中分离出的新型Gasseri gasseri EV1461共培养诱导细菌素

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Background Lactobacillus gasseri is one of the dominant Lactobacillus species in the vaginal ecosystem. Some strains of this species have a high potential for being used as probiotics in order to maintain vaginal homeostasis, since they may confer colonization resistance against pathogens in the vagina by direct inhibition through production of antimicrobial compounds, as bacteriocins. In this work we have studied bacteriocin production of gassericin E (GasE), a novel bacteriocin produced by L. gasseri EV1461, a strain isolated from the vagina of a healthy woman, and whose production was shown to be promoted by the presence of certain specific bacteria in co-culture. Biochemical and genetic characterization of this novel bacteriocin are addressed. Results We found that the inhibitory spectrum of L. gasseri EV1461 was broad, being directed to species both related and non-related to the producing strain. Interestingly, L. gasseri EV1461 inhibited the grown of pathogens usually associated with bacterial vaginosis (BV). The antimicrobial activity was due to the production of a novel bacteriocin, gassericin E (GasE). Production of this bacteriocin in broth medium only was achieved at high cell densities. At low cell densities, bacteriocin production ceased and only was restored after the addition of a supernatant from a previous bacteriocin-producing EV1461 culture (autoinduction), or through co-cultivation with several other Gram-positive strains (inducing bacteria). DNA sequence of the GasE locus revealed the presence of two putative operons which could be involved in biosynthesis and immunity of this bacteriocin ( gaeAXI ), and in regulation, transport and processing ( gaePKRTC ). The gaePKR encodes a putative three-component regulatory system, involving an autoinducer peptide (GaeP), a histidine protein kinase (GaeK) and a response regulator (GaeR), while the gaeTC encodes for an ABC transporter (GaeT) and their accessory protein (GaeC), involved in transport and processing of the bacteriocin. The gaeAXI , encodes for the bacteriocin gassericin E (GasE), a putative peptide bacteriocin (GaeX), and their immunity protein (GaeI). Conclusions The origin of the strain (vagina of healthy woman) and its ability to produce bacteriocins with inhibitory activity against vaginal pathogens may be an advantage for using L. gasseri EV1461 as a probiotic strain to fight and/or prevent bacterial infections as bacterial vaginosis (BV), since it could be better adapted to live and compete into the vaginal environment.
机译:背景技术Gasseri乳杆菌是阴道生态系统中的主要乳杆菌种之一。该物种的某些菌株具有很高的潜力,可以用作益生菌以维持阴道稳态,因为它们可以通过直接抑制产生抗菌素(如细菌素)来赋予阴道抵抗病原菌的定殖能力。在这项工作中,我们研究了Gassericin E(GasE)的细菌素生产,这是一种由Ls gasseri EV1461产生的新型细菌素,该菌株是从健康女性的阴道中分离出的一种菌株,并且通过某些特定的存在可以促进其产生共培养细菌。解决了这种新型细菌素的生化和遗传特征。结果我们发现L. gasseri EV1461的抑制谱很广,涉及与生产菌株相关和无关的物种。有趣的是,加氏乳杆菌EV1461抑制了通常与细菌性阴道病(BV)有关的病原体的生长。抗菌活性归因于新型细菌素,Gassericin E(GasE)的产生。仅在高细胞密度下才能在肉汤培养基中生产这种细菌素。在低细胞密度下,细菌素的生产停止,只有在添加以前生产细菌素的EV1461培养物(自动诱导)的上清液后,或通过与其他几种革兰氏阳性菌株(诱导细菌)的共培养,才恢复细菌素的产生。 GasE基因座的DNA序列显示存在两个推定的操纵子,它们可能参与该细菌素(gaeAXI)的生物合成和免疫以及调节,运输和加工(gaePKRTC)。 gaePKR编码一个假定的三组分调节系统,该系统涉及自动诱导肽(GaeP),组氨酸蛋白激酶(GaeK)和响应调节剂(GaeR),而gaeTC编码ABC转运蛋白(GaeT)及其辅助蛋白( GaeC),参与细菌素的运输和加工。 gaeAXI编码细菌素Gassericin E(GasE),推定的肽细菌素(GaeX)及其免疫蛋白(GaeI)。结论该菌株的起源(健康女性的阴道)及其产生对阴道病原体具有抑制活性的细菌素的能力可能是使用加氏乳杆菌EV1461作为益生菌菌株来对抗和/或预防细菌性感染(如细菌性阴道病)的一个优势。 BV),因为它可以更好地适应阴道环境中的生活和竞争。

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