首页> 外文OA文献 >Interrupting peptidoglycan deacetylation during Bdellovibrio predator-prey interaction prevents ultimate destruction of prey wall, liberating bacterial-ghosts
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Interrupting peptidoglycan deacetylation during Bdellovibrio predator-prey interaction prevents ultimate destruction of prey wall, liberating bacterial-ghosts

机译:在Bdellovibrio捕食者与猎物相互作用期间中断肽聚糖脱乙酰作用可防止对猎物壁的最终破坏,释放细菌-幽灵

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摘要

The peptidoglycan wall, located in the periplasm between the inner and outer membranes of the cell envelope in Gram-negative bacteria, maintains cell shape and endows osmotic robustness. Predatory Bdellovibrio bacteria invade the periplasm of other bacterial prey cells, usually crossing the peptidoglycan layer, forming transient structures called bdelloplasts within which the predators replicate. Prey peptidoglycan remains intact for several hours, but is modified and then degraded by predators escaping. Here we show predation is altered by deleting two Bdellovibrio N-acetylglucosamine (GlcNAc) deacetylases, one of which we show to have a unique two domain structure with a novel regulatory-”plug”. Deleting the deacetylases limits peptidoglycan degradation and rounded prey cell “ghosts” persist after mutant-predator exit. Mutant predators can replicate unusually in the periplasmic region between the peptidoglycan wall and the outer membrane rather than between wall and inner-membrane, yet still obtain nutrients from the prey cytoplasm. Deleting two further genes encoding DacB/PBP4 family proteins, known to decrosslink and round prey peptidoglycan, results in a quadruple mutant Bdellovibrio which leaves prey-shaped ghosts upon predation. The resultant bacterial ghosts contain cytoplasmic membrane within bacteria-shaped peptidoglycan surrounded by outer membrane material which could have promise as “bacterial skeletons” for housing artificial chromosomes.
机译:肽聚糖壁位于革兰氏阴性细菌的细胞膜内膜和外膜之间的周质中,可维持细胞形状并赋予渗透性。掠食性Bdellovibrio细菌侵入其他细菌猎物细胞的周质,通常穿过肽聚糖层,形成称为bdelloplasts的瞬时结构,捕食者在其中复制。猎物肽聚糖可以保持完整状态几个小时,但会被捕食者逃脱而被修饰然后降解。在这里,我们显示通过删除两个Bdellovibrio N-乙酰氨基葡糖(GlcNAc)脱乙酰基酶,捕食被改变了,其中之一表明我们具有独特的两个结构域结构,并带有新的调节性“塞子”。删除脱乙酰基酶限制了肽聚糖的降解,在捕食突变体退出后,圆形的猎物细胞“鬼魂”仍然存在。突变的捕食者可以在肽聚糖壁与外膜之间的周质区域中异常复制,而不是在壁与内膜之间的周质区域中复制,但仍从猎物的细胞质中获取营养。删除另外两个编码DacB / PBP4家族蛋白的基因,已知该基因可解交联并使猎物肽聚糖圆形化,从而导致四倍体突变的Bdellovibrio,在被捕食时会留下猎物状的鬼魂。由此产生的细菌幽灵在被外膜材料包围的细菌形肽聚糖中包含细胞质膜,这可能有望成为容纳人工染色体的“细菌骨架”。

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