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含四肽重复蛋白在嗜肺军团菌条件性毒力表型中的意义。

Implication of proteins containing tetratricopeptide repeats in conditional virulence phenotypes of Legionella pneumophila.

机构信息

Department of Biochemistry, Albert Einstein College of Medicine, Bronx, New York, USA.

出版信息

J Bacteriol. 2012 Jul;194(14):3579-88. doi: 10.1128/JB.00399-12. Epub 2012 May 4.

Abstract

Legionella pneumophila, the causative agent of Legionnaires' disease, is a ubiquitous freshwater bacterium whose virulence phenotypes require a type IV secretion system (T4SS). L. pneumophila strain JR32 contains two virulence-associated T4SSs, the Dot/Icm and Lvh T4SSs. Defective entry and phagosome acidification phenotypes of dot/icm mutants are conditional and reversed by incubating broth-grown stationary-phase cultures in water (WS treatment) prior to infection, as a mimic of the aquatic environment of Legionella. Reversal of dot/icm virulence defects requires the Lvh T4SS and is associated with a >10-fold induction of LpnE, a tetratricopeptide repeat (TPR)-containing protein. In the current study, we demonstrated that defective entry and phagosome acidification phenotypes of mutants with changes in LpnE and EnhC, another TPR-containing protein, were similarly reversed by WS treatment. In contrast to dot/icm mutants for which the Lvh T4SS was required, reversal for the ΔlpnE or the ΔenhC mutant required that the other TPR-containing protein be present. The single and double ΔlpnE and ΔenhC mutants showed a hypersensitivity to sodium ion, a phenotype associated with dysfunction of the Dot/Icm T4SS. The ΔlpnE single and the ΔlpnE ΔenhC double mutant showed 3- to 9-fold increases in translocation of Dot/Icm T4SS substrates, LegS2/SplY and LepB. Taken together, these data identify TPR-containing proteins in a second mechanism by which the WS mimic of a Legionella environmental niche can reverse virulence defects of broth-grown cultures and implicate LpnE and EnhC directly or indirectly in translocation of Dot/Icm T4SS protein substrates.

摘要

嗜肺军团菌是军团病的病原体,是一种普遍存在的淡水细菌,其毒力表型需要一种 IV 型分泌系统(T4SS)。嗜肺军团菌 JR32 株含有两种与毒力相关的 T4SS,Dot/Icm 和 Lvh T4SS。Dot/icm 突变体的入侵和吞噬体酸化缺陷表型是条件性的,并可通过在感染前将液体生长的静止期培养物在水中(WS 处理)孵育来逆转,模拟军团菌的水生环境。Dot/icm 毒力缺陷的逆转需要 Lvh T4SS,并与 TPR 蛋白 LpnE 的诱导增加 >10 倍相关。在本研究中,我们证明了 LpnE 和 EnhC 突变体的入侵和吞噬体酸化缺陷表型也可以通过 WS 处理逆转,这两种蛋白都含有 TPR 结构域。与 dot/icm 突变体不同,Lvh T4SS 对于逆转ΔlpnE 或ΔenhC 突变体是必需的,而其他 TPR 蛋白的存在是必需的。单突变体和双突变体ΔlpnE 和ΔenhC 对钠离子表现出超敏性,这是一种与 Dot/Icm T4SS 功能障碍相关的表型。ΔlpnE 单突变体和ΔlpnE ΔenhC 双突变体的 Dot/Icm T4SS 底物 LegS2/SplY 和 LepB 的转运增加了 3-9 倍。综上所述,这些数据表明 TPR 蛋白在第二个机制中起作用,军团菌环境小生境的 WS 模拟可以逆转液体培养物的毒力缺陷,并直接或间接地表明 LpnE 和 EnhC 参与 Dot/Icm T4SS 蛋白底物的转运。

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