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首页> 外文期刊>Journal of industrial microbiology & biotechnology >Functional role of oppA encoding an oligopeptide-binding protein from Lactobacillus salivarius Ren in bile tolerance
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Functional role of oppA encoding an oligopeptide-binding protein from Lactobacillus salivarius Ren in bile tolerance

机译:唾液乳杆菌Ren编码寡肽结合蛋白的oppA在胆汁耐受性中的功能作用

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Lactobacillus salivarius is a member of the indigenous microbiota of the human gastrointestinal tract (GIT), and some L. salivarius strains are considered as probiotics. Bile tolerance is a crucial property for probiotic bacteria to survive the transit through the GIT and exert their beneficial effects. In this work, the functional role of oppA encoding an oligopeptide transporter substrate-binding protein from L. salivarius Ren in bile salt tolerance was investigated. In silico analysis revealed that the oppA gene encodes a 61.7-kDa cell surface-anchored hydrophilic protein with a canonical lipoprotein signal peptide. Homologous overexpression of OppA was shown to confer 20-fold higher tolerance to 0.5 % oxgall in L. salivarius Ren. Furthermore, the recombinant strain exhibited 1.8-fold and 3.6-fold higher survival when exposed to the sublethal concentration of sodium taurocholate and sodium taurodeoxycholate, respectively, while no significant change was observed when exposed to sodium glycocholate and sodium glycodeoxycholate (GDCA). Our results indicate that OppA confers specific resistance to taurine-conjugated bile salts in L. salivarius Ren. In addition, the OppA overexpression strain also showed significant increased resistance to heat and salt stresses, suggesting the protective role of OppA against multiple stresses in L. salivarius Ren.
机译:唾液乳杆菌是人胃肠道(GIT)固有微生物群的成员,某些唾液乳杆菌菌株被视为益生菌。胆汁耐受性是益生菌生存在通过GIT的过程中并发挥其有益作用的关键特性。在这项工作中,研究了编码来自唾液乳杆菌的寡肽转运蛋白底物结合蛋白的oppA在胆汁盐耐受性中的功能。在计算机分析中发现,oppA基因编码具有标准脂蛋白信号肽的61.7 kDa细胞表面锚定的亲水蛋白。在唾液乳杆菌中,OppA的同源过量表达对0.5%oxgall的耐受性提高了20倍。此外,重组菌株分别暴露于亚致死浓度的牛磺胆酸钠和牛磺脱氧胆酸钠时,其存活率分别高1.8倍和3.6倍,而暴露于糖胆酸钠和糖脱氧胆酸钠(GDCA)时则未观察到明显变化。我们的结果表明,OppA对唾液乳杆菌Ren中的牛磺酸结合胆汁盐具有特异性抗性。另外,OppA过表达菌株还显示出对热和盐胁迫的显着增加的抗性,表明OppA在唾液乳杆菌中对多种胁迫的保护作用。

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