首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >The phagosomal transporter A couples threonine acquisition to differentiation and replication of Legionella pneumophila in macrophages
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The phagosomal transporter A couples threonine acquisition to differentiation and replication of Legionella pneumophila in macrophages

机译:吞噬体转运蛋白A将苏氨酸的获得与巨噬细胞中嗜肺军团菌的分化和复制结合

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摘要

Differentiation in response to environmental cues is integral to the success of many intracellular pathogens. By characterizing a Legionella pneumophila mutant defective for differentiation in broth and replication in macrophages, we identified a subfamily of major facilitator superfamily transporters, here named Pht (phagosomal transporter), that also is conserved in two other vacuolar pathogens, Coxiella burnetii and Franciseila tularensis. Biolog phenotype microarray analysis indicated that PhtA transports threonine, an essential amino acid. Either excess threonine or threonine peptides bypass phtA function. In minimal medium, phtA mutants do not replicate; in rich broth, the bacteria prematurely differentiate to the transmissive phase, as judged by the kinetics of flaA-gfp expression, heat resistance, and sodium sensitivity. PhtA is dispensable for transmissive L. pneumophila to establish and persist within a replication vacuole but is essential for their differentiation to the replicative phase, based on phenotypic and RT-PCR analysis. Accordingly, we propose that the Pht transporter family equips transmissive L. pneumophila, C burnetii, and F. tularensis to assess their phagosomal nutrient supply before committing to reenter the cell cycle.
机译:对环境线索的响应分化是许多细胞内病原体成功的必要条件。通过表征嗜肺军团杆菌突变体,该突变体在肉汤中的分化和在巨噬细胞中的复制缺陷,我们确定了主要促进子超家族转运蛋白的亚家族,在这里被称为Pht(吞噬体转运蛋白),在两个其他液泡病原体中也被保存,即伯氏柯氏杆菌和弗朗西斯图拉菌。 Biolog表型微阵列分析表明PhtA转运苏氨酸,一种必需氨基酸。过量的苏氨酸或苏氨酸肽都会绕过phtA功能。在基本培养基中,phtA突变体不会复制;根据flaA-gfp表达动力学,耐热性和钠敏感性,在富含肉汤的细菌中,细菌过早地分化为透射相。根据表型和RT-PCR分析,PhtA对于透射性肺炎支原体的建立和维持在复制液泡中是必不可少的,但是对于它们向复制期的分化至关重要。因此,我们建议Pht转运蛋白家族装备有透光性的肺炎链球菌,burnetii和F. tularensis,以便在重新进入细胞周期之前评估它们的吞噬营养供应。

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