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The Legionella pneumophila tatB Gene Facilitates Secretion of Phospholipase C Growth under Iron-Limiting Conditions and Intracellular Infection

机译:嗜肺军团菌tatB基因促进磷脂酶C的分泌铁限制条件下的生长和细胞内感染

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摘要

Our previous mutational analysis of Legionella pneumophila demonstrated a role for type II protein (Lsp) secretion and iron acquisition in intracellular infection and virulence. In gram-negative bacteria, the twin-arginine translocation (Tat) pathway is involved in secretion of proteins, including components of respiratory complexes, across the inner membrane to the periplasm. To assess the significance of Tat for L. pneumophila, tatB mutants were characterized. The mutants exhibited normal growth in standard media but grew slowly under low-iron conditions. They were also impaired in the Nadi assay, indicating that the function of cytochrome c oxidase is influenced by tatB. Consistent with this observation, a subunit of the cytochrome c reductase was shown to be a Tat substrate. Supernatants of the tatB mutants showed a 30% reduction in phospholipase C activity while maintaining normal levels of other Lsp secreted activities. When tested for infection of U937 macrophages, the tatB mutants showed a 10-fold reduction in growth. Double mutants lacking tatB and Lsp secretion were even more defective, suggesting tatB has an intracellular role that is independent of Lsp. tatB mutants were also impaired 20-fold in Hartmannella vermiformis amoebae cultured in the presence of an iron chelator. All mutant phenotypes were complemented by reintroduction of an intact tatB. Thus, L. pneumophila tatB plays a role in the formation of a respiratory complex, growth under low-iron conditions, the secretion of a phospholipase C activity, and intracellular infection.
机译:我们以前对军团菌的突变分析表明,II型蛋白(Lsp)分泌和铁的摄取在细胞内感染和毒力中发挥着作用。在革兰氏阴性细菌中,双精氨酸易位(Tat)途径涉及蛋白质(包括呼吸系统复合物的成分)在内膜到周质之间的分泌。为了评估Tat对肺炎链球菌的重要性,对tatB突变体进行了表征。突变体在标准培养基中显示正常生长,但在低铁条件下生长缓慢。它们在Nadi分析中也受到损害,表明细胞色素c氧化酶的功能受tatB影响。与该观察结果一致,细胞色素C还原酶的亚基显示为Tat底物。 tatB突变体的上清液显示磷脂酶C活性降低了30%,同时保持了其他Lsp分泌活性的正常水平。当测试U937巨噬细胞的感染时,tatB突变体显示生长降低了10倍。缺少tatB和Lsp分泌的双突变体甚至更具缺陷性,表明tatB具有独立于Lsp的细胞内作用。在铁螯合剂的存在下培养的变形金合杆菌中,tatB突变体也受损20倍。通过重新引入完整的tatB来补充所有突变表型。因此,嗜肺乳杆菌tatB在呼吸复合物的形成,在低铁条件下的生长,磷脂酶C活性的分泌和细胞内感染中起作用。

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