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首页> 外文期刊>Science Advances >Peptidoglycan editing provides immunity to Acinetobacter baumannii during bacterial warfare
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Peptidoglycan editing provides immunity to Acinetobacter baumannii during bacterial warfare

机译:肽聚糖编辑在细菌战期间为肺杆菌的免疫提供免疫力

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Peptidoglycan (PG) is essential in most bacteria. Thus, it is often targeted by various assaults, including interbacterial attacks via the type VI secretion system (T6SS). Here, we report that the Gram-negative bacterium Acinetobacter baumannii strain ATCC 17978 produces, secretes, and incorporates the noncanonical d-amino acid d-lysine into its PG during stationary phase. We show that PG editing increases the competitiveness of A. baumannii during bacterial warfare by providing immunity against peptidoglycan-targeting T6SS effectors from various bacterial competitors. In contrast, we found that d-Lys production is detrimental to pathogenesis due, at least in part, to the activity of the human enzyme d-amino acid oxidase (DAO), which degrades d-Lys producing Hsub2/subOsub2/sub toxic to bacteria. Phylogenetic analyses indicate that the last common ancestor of A. baumannii had the ability to produce d-Lys. However, this trait was independently lost multiple times, likely reflecting the evolution of A. baumannii as a human pathogen.
机译:肽聚糖(pg)在大多数细菌中是必需的。因此,它通常由各种攻击靶向,包括通过VI分泌系统(T6S)的区间攻击。在此,我们报告称,在固定相期间,革兰氏阴性菌菌株Baumannii菌株ATCC 17978产生并将非甘露出的D-氨基酸D-赖氨酸纳入其PG。我们认为PG编辑通过提供来自各种细菌竞争机的肽聚糖靶向T6SS效应的抗药性来增加A.Baumannii的竞争力。相反,我们发现,D-Lys生产至少部分地对致病性是有害的,其至少部分地对人酶D-氨基酸氧化酶(DAO)的活性降低了产生H 2的D-Lys H 2 O 2 毒性对细菌。系统发育分析表明,A.Baumannii的最后一个共同的祖先具有生产D-Lys的能力。然而,这种特征独立地失去多次,可能反映了A.Baumannii作为人病原体的演变。

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