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Novel Immunity Proteins Associated with Colicin M-like Bacteriocins Exhibit Promiscuous Protection in Pseudomonas

机译:与colicin M样细菌素相关的新型免疫蛋白在假单胞菌中表现出混杂保护。

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摘要

Bacteriocins related to colicin M, acting via cleavage of the cell wall precursor lipid II, have been characterized in γ- and β-proteobacteria. Depending on the species, immunity is provided by either an inner membrane-anchored periplasmic protein or by an integral membrane protein. In Pseudomonas however, the immunity partner of colicin M-like bacteriocins remains unknown. Based on an in silico analysis in pseudomonad genomes, we here identify a gene encoding a putative immunity partner that represents a novel type of integral membrane protein (PmiA, Pseudomonas colicin M-like immunity type A). By heterologous expression of pmiA genes in susceptible strains, we show that immunity to colicin M-like bacteriocins is indeed provided by the cognate PmiA. Sequence homology among PmiA proteins is essentially absent, except for a short motif with a conserved periplasm-exposed aspartate residue. However, PmiA's protective function is not abolished by changing this acidic residue to the uncharged alanine. Immunity by PmiAs appears promiscuous to the extent that PmiA homologs from a clade sharing <40% pairwise amino acid identity, equally provide protection against the bacteriocin linked to the original PmiA. This study shows that multiple immunity factors have evolved independently to silence lipid II-targeting enzymatic bacteriocins. Their relaxed bacteriocin immunization capacity contrasts to the strict specificity of immunity proteins shielding the enzymatic domain of nuclease bacteriocins. The nature of associated immune functions needs consideration when using such natural protein antibiotics or designing novel variants.
机译:通过裂解细胞壁前体脂质II发挥作用的与大肠菌素M相关的细菌素已在γ和β变形细菌中进行了表征。取决于物种,免疫力是由内膜锚定的周质蛋白或整合膜蛋白提供的。然而,在假单胞菌中,大肠菌素M样细菌素的免疫伴侣仍然未知。基于假单胞菌基因组的计算机分析,我们在这里鉴定了一个编码假定的免疫伴侣的基因,该伴侣代表一种新型的整合膜蛋白(PmiA,假单胞菌大肠菌类M型免疫A型)。通过在易感菌株中pmiA基因的异源表达,我们表明对同源大肠菌PmiA确实提供了对大肠菌素M样细菌素的免疫力。除了具有保守的周质暴露的天冬氨酸残基的短基序外,基本上不存在PmiA蛋白之间的序列同源性。但是,通过将该酸性残基改变为不带电荷的丙氨酸,并不能消除PmiA的保护功能。 PmiA的免疫似乎是混杂的,以至来自共享<40%成对氨基酸同一性的进化枝的PmiA同源物同样提供了针对与原始PmiA连接的细菌素的保护。这项研究表明,多种免疫因子已独立进化,以沉默靶向脂质II的酶细菌素。它们放松的细菌素免疫能力与屏蔽核酸酶细菌素酶域的免疫蛋白的严格特异性形成鲜明对比。使用此类天然蛋白抗生素或设计新的变体时,需要考虑相关免疫功能的性质。

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