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Both IIC and IID Components of Mannose Phosphotransferase System Are Involved in the Specific Recognition between Immunity Protein PedB and Bacteriocin-Receptor Complex

机译:甘露糖磷酸转移酶系统的IIC和IID组件都参与免疫蛋白PedB和细菌素受体复合物之间的特异性识别。

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摘要

Upon exposure to exogenous pediocin-like bacteriocins, immunity proteins specifically bind to the target receptor of the mannose phosphotransferase system components (man-PTS IIC and IID), therefore preventing bacterial cell death. However, the specific recognition of immunity proteins and its associated target receptors remains poorly understood. In this study, we constructed hybrid receptors to identify the domains of IIC and/or IID recognized by the immunity protein PedB, which confers immunity to pediocin PA-1. Using Lactobacillus plantarum man-PTS EII mutant W903, the IICD components of four pediocin PA-1-sensitive strains (L. plantarum WQ0815, Leuconostoc mesenteroides 05–43, Lactobacillus salivarius REN and Lactobacillus acidophilus 05–172) were respectively co-expressed with the immunity protein PedB. Well-diffusions assays showed that only the complex formed by LpIICD from L. plantarum WQ0815 with pediocin PA-1 could be recognized by PedB. In addition, a two-step PCR approach was used to construct hybrid receptors by combining LpIIC or LpIID recognized by PedB with the other three heterologous IID or IIC compounds unrecognized by PedB, respectively. The results showed that all six hybrid receptors were recognized by pediocin PA-1. However, when IIC or IID of L. plantarum WQ0815 was replaced with any corresponding IIC or IID component from L. mesenteroides 05–43, L. salivarius REN and L. acidophilus 05–172, all the hybrid receptors could not be recognized by PedB. Taken altogether, we concluded that both IIC and IID components of the mannose phosphotransferase system play an important role in the specific recognition between the bacteriocin-receptor complex and the immunity protein PedB.
机译:暴露于外源的类似pediocin的细菌素后,免疫蛋白特异性结合至甘露糖磷酸转移酶系统组分(man-PTS IIC和IID)的靶受体,从而防止细菌细胞死亡。但是,对免疫蛋白及其相关靶受体的特异性识别仍然知之甚少。在这项研究中,我们构建了杂交受体,以鉴定免疫蛋白PedB识别的IIC和/或IID结构域,从而赋予对pediocin PA-1的免疫力。使用植物乳杆菌人-PTS EII突变体W903,分别与4种对pediocin PA-1敏感的菌株(植物乳杆菌WQ0815,间肠乳杆菌Leuconostoc mesenteroides 05-43,唾液乳杆菌REN和嗜酸乳杆菌05-172)的IICD成分共表达。免疫蛋白PedB。良好的扩散分析表明,PedB只能识别植物乳杆菌WQ0815的LpIICD与pediocin PA-1形成的复合物。此外,通过将PedB识别的LpIIC或LpIID分别与PedB无法识别的其他三种异源IID或IIC化合物相结合,使用了两步PCR方法来构建杂交受体。结果表明,pediocin PA-1可以识别所有六个杂种受体。但是,当用植物肠球菌L. mesenteroides 05-43,唾液乳杆菌REN和嗜酸乳杆菌05-172的任何相应IIC或IID组件代替植物乳杆菌WQ0815的IIC或IID时,PedB无法识别所有杂种受体。总而言之,我们得出结论,甘露糖磷酸转移酶系统的IIC和IID组分在细菌素受体复合物和免疫蛋白PedB之间的特异性识别中起着重要作用。

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