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Making sense of quorum sensing in lactobacilli: a special focus on Lactobacillus plantarum WCFS1

机译:乳酸杆菌的批量传感感:专注于乳酸杆菌WCFS1

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In silico identification criteria were defined to predict if genes encoding histidine protein kinases (HPKs) and response regulators (RRs) could be part of peptide-based quorum sensing (QS) two-component regulatory systems (QS-TCSs) in Firmicutes. These criteria were used to screen HPKs and RRs annotated on the completed genome sequences of Lactobacillus species, and several (putative) QS-TCSs were identified in this way. The five peptide-based QS-TCSs that were predicted on the Lactobacillus plantarum WCFS1 genome were further analysed to test their (QS) functionality. Four of these systems contained an upstream gene encoding a putative autoinducing peptide (AIP), of which two were preceded by a double-glycine-type leader peptide. One of these was identical to the plnABCD regulatory system of L. plantarum C11 and was shown to regulate plantaricin production in L. plantarum WCFS1. The third TCS was designated lamBDCA for Lactobacillus agr-like module, where the lamD gene was shown to encode a cyclic thiolactone peptide. The fourth TCS was paralogous to the lam system and contained a putative AIP-encoding gene but lacked the lamB gene. Finally, a genetically separated orphan HPK and RR that showed clear peptide-based QS characteristics could form a fifth peptide-based QS-TCS. The predicted presence of multiple (peptide-based) QS-TCSs in some lactobacilli and in particular in L. plantarum might be a reflection of the ability of these species to persist in a diverse range of ecological niches.
机译:在硅鉴定标准中定义为预测编码组氨酸蛋白激酶(HPK)和响应调节剂(RRS)的基因可以是肽的法定传感(QS)双组分调节系统(QS-TCSS)的一部分。这些标准用于筛选HPK和RR在乳酸杆菌物种的完成基因组序列上注释,并以这种方式鉴定了几种(推定的)QS-TCS。进一步分析在乳酸杆菌WCFS1基因组上预测的五种基于肽的QS-TCS,以测试其(QS)官能度。这些系统中的四种含有编码推定的自身诱导肽(AIP)的上游基因,其中两者在双甘氨酸型引导肽之前。其中一个是与L.Playarum C11的PlNaBCD调节系统相同,并显示在L.Purerarum WCFS1中调节Plantaricin生产。第三种TCS被指定为乳酸杆菌蛋白涂层模块的λ,其中显示脉冲基因编码环状硫灭氨酸肽。第四个TCS对林系统副寄生,含有推定的AIP编码基因,但缺乏羊肉基因。最后,出现透明肽的QS特性的基因分离的孤儿HPK和RR可以形成第五肽的QS-TC。在一些乳杆菌中预测的多种(肽基)QS-TCS的存在,特别是L.Platarum在L.Platarum中可能反映了这些物种在各种生态龛中持续存在的能力。

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