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Structure of the atypical bacteriocin pectocin M2 implies a novel mechanism of protein uptake

机译:非典型细菌素果胶M2的结构暗示蛋白质摄取的新机制

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摘要

The colicin-like bacteriocins are potent protein antibiotics that have evolved to efficiently cross the outer membrane of Gram-negative bacteria by parasitizing nutrient uptake systems. We have structurally characterized the colicin M-like bacteriocin, pectocin M2, which is active against strains of Pectobacterium spp. This unusual bacteriocin lacks the intrinsically unstructured translocation domain that usually mediates translocation of these bacteriocins across the outer membrane, containing only a single globular ferredoxin domain connected to its cytotoxic domain by a flexible alpha-helix, which allows it to adopt two distinct conformations in solution. The ferredoxin domain of pectocin M2 is homologous to plant ferredoxins and allows pectocin M2 to parasitize a system utilized by Pectobacterium to obtain iron during infection of plants. Furthermore, we identify a novel ferredoxin-containing bacteriocin pectocin P, which possesses a cytotoxic domain homologous to lysozyme, illustrating that the ferredoxin domain acts as a generic delivery module for cytotoxic domains in Pectobacterium.
机译:大肠菌素样细菌素是有效的蛋白质抗生素,其通过寄生化养分吸收系统而有效地穿过革兰氏阴性细菌的外膜。我们已经在结构上表征了大肠菌素M样细菌素,果胶M2,它对Pectobacterium spp菌株具有活性。这种不常见的细菌素缺乏固有的非结构化易位结构域,该结构域通常介导这些细菌素跨外膜的易位,仅包含一个球状铁氧还蛋白域,该域通过柔性α-螺旋与其细胞毒性域相连,从而使其在溶液中可以采用两种不同的构象。果胶M2的铁氧还蛋白域与植物铁氧还蛋白同源,并允许果胶M2寄生植物细菌利用的系统来感染植物。此外,我们确定了一种新型的含铁氧还蛋白的细菌素果胶P,它具有与溶菌酶同源的细胞毒性域,说明该铁氧还蛋白域在果胶杆菌中充当细胞毒性域的通用传递模块。

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