首页> 美国卫生研究院文献>Journal of Bacteriology >The DotL Protein a Member of the TraG-Coupling Protein Family Is Essential for Viability of Legionella pneumophila Strain Lp02
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The DotL Protein a Member of the TraG-Coupling Protein Family Is Essential for Viability of Legionella pneumophila Strain Lp02

机译:DotL蛋白是TraG偶联蛋白家族的成员对军团菌嗜肺军团菌Lp02的活力至关重要

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摘要

Legionella pneumophila is able to survive inside phagocytic cells by an internalization route that bypasses fusion of the nascent phagosome with the endocytic pathway to allow formation of a replicative phagosome. The dot/icm genes, a major virulence system of L. pneumophila, encode a type IVB secretion system that is required for intracellular growth. One Dot protein, DotL, has sequence similarity to type IV secretion system coupling proteins (T4CPs). In other systems, coupling proteins are not required for viability of the organism. Here we report the first example of a strain, L. pneumophila Lp02, in which a putative T4CP is essential for viability of the organism on bacteriological media. This result is particularly surprising since the majority of the dot/icm genes in Lp02 are dispensable for growth outside of a host cell, a condition that does not require a functional Dot/Icm secretion complex. We were able to isolate suppressors of the ΔdotL lethality and found that many contained mutations in other components of the Dot/Icm secretion system. A systematic analysis of dot/icm deletion mutants revealed that the majority of them (20 of 26) suppressed the lethality phenotype, indicating a partially assembled secretion system may be the source of ΔdotL toxicity in the wild-type strain. These results are consistent with a model in which the DotL protein plays a role in regulating the activity of the L. pneumophila type IV secretion apparatus.
机译:嗜肺军团菌能够通过绕过新生吞噬体与内吞途径融合的内在化途径在吞噬细胞内部存活,从而形成复制性吞噬体。 dot / icm基因是肺炎链球菌的主要毒力系统,编码细胞内生长所需的IVB型分泌系统。一种Dot蛋白DotL与IV型分泌系统偶联蛋白(T4CP)具有序列相似性。在其他系统中,生物的生存力并不需要偶联蛋白。在这里,我们报告了一个菌株L. pneumophila Lp02的第一个示例,其中推定的T4CP对于微生物在细菌培养基上的生存能力至关重要。该结果特别令人惊讶,因为Lp02中的大多数dot / icm基因对于宿主细胞外部的生长都是不需要的,这种情况不需要功能性的Dot / Icm分泌复合物。我们能够分离出ΔdotL杀伤力的抑制剂,发现许多Dot / Icm分泌系统其他组分中都含有突变。对dot / icm缺失突变体的系统分析表明,它们中的大多数(26个中的20个)抑制了致死性表型,表明部分组装的分泌系统可能是野生型菌株中ΔdotL毒性的来源。这些结果与其中DotL蛋白在调节L. pneumophila IV型分泌设备的活性中起作用的模型一致。

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