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Class II one-peptide bacteriocins target a phylogenetically defined subgroup of mannose phosphotransferase systems on sensitive cells

机译:II类单肽菌杂菌素靶向敏感细胞上的甘露糖磷酸转移酶系统的系统源定义的亚组

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Membrane-located proteins (IIC and IID) of the mannose-phosphotransferase system (man-PTS) have previously been shown to serve as target receptors for several bacteriocins. Although many bacteria contain at least one such man-PTS in their genome, most bacteriocins display a narrow inhibitory spectrum, targeting predominantly bacteria closely related to the producers. In the present study we have analysed the receptor spectrum of one-peptide bacteriocins of class II. A phylogenetic analysis of 86 man-PTSs from a wide range of bacterial genera grouped the man-PTSs into three main clusters (groups I–III). Fourteen man-PTSs distributed across the phylogenetic tree were selected for experimental analysis in a heterologous host. Only members of group I could serve as receptors for class IIa bacteriocins, and the receptor efficiencies varied in a pattern directly related to their phylogenetic position. A multiple sequence alignment of IIC and IID proteins revealed three sequence regions (two in IIC and one in IID) that distinguish members of the bacteriocin-susceptible group from those of the other groups, suggesting that these amino acid regions confer the specific bacteriocin receptor function. Moreover, we demonstrated that variation in sensitivity might also exist within the same species due to differential expression levels of the receptor, since three strains of Lactobacillus sakei harbouring identical man-PTSs were shown to display different expression levels of a man-PTS gene that corresponded to the variation in bacteriocin sensitivity. Together, the results of our study show that the level of bacteriocin susceptibility for a bacterial cell is primarily determined by differences in its man-PTS proteins, although the expression levels of the corresponding genes also play an important role.
机译:先前已被证明甘露糖 - 磷酸转移酶系统(MAN-PTS)的膜定位蛋白(IID和IID)用作几种细菌素的靶受体。虽然许多细菌在其基因组中含有至少一种这样的人 - PTS,但大多数细菌杂菌素显示出狭窄的抑制谱,主要靶向与生产者密切相关的细菌。在本研究中,我们分析了II类单肽菌肽的受体谱。来自各种细菌属的86人PTS的系统发育分析将人PTS分组为三个主要簇(I-III组)。选择分布在系统发育树上的十四人口PTS用于异源宿主的实验分析。只有群体的成员可以作为IIA类菌委的受体,受体效率在与其系统发育位置直接相关的图案中变化。 IIC和IID蛋白的多序列对准显示了三个序列区域(IID中的两个),使得细菌素易感组的成员与其他组的成员区分开,表明这些氨基酸区赋予特定的细菌病受体功能。此外,我们证明,由于受体的差异表达水平,敏感性的变化也可能存在于相同物种中,因为显示出含有相同的人PTS的三种乳酸杆菌菌株,以显示对应的人-PTS基因的不同表达水平对细菌素敏感性的变化。我们的研究结果表明,细菌细胞的细菌素易感程度主要取决于其Man-Pts蛋白的差异,尽管相应基因的表达水平也起重要作用。

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