Ciliate Paramecium is a natural reservoir of Legionella pneumophila
0303 health sciences
Paramecium
Macrophages
Gene Expression Regulation, Bacterial
Article
Cell Line
Legionella pneumophila
03 medical and health sciences
Genes, Bacterial
Host-Pathogen Interactions
Mutation
Humans
Legionnaires' Disease
Symbiosis
Disease Reservoirs
DOI:
10.1038/srep24322
Publication Date:
2016-04-15T09:17:41Z
AUTHORS (6)
ABSTRACT
AbstractLegionella pneumophila, the causative agent of Legionnaires’ disease, replicates within alveolar macrophages and free-living amoebae. However, the lifestyle of L. pneumophila in the environment remains largely unknown. Here we established a novel natural host model of L. pneumophila endosymbiosis using the ciliate Paramecium caudatum. We also identified Legionella endosymbiosis-modulating factor A (LefA), which contributes to the change in life stage from endosymbiosis to host lysis, enabling escape to the environment. We isolated L. pneumophila strains from the environment and they exhibited cytotoxicity toward P. caudatum and induced host lysis. Acidification of the Legionella-containing vacuole (LCV) was inhibited and enlarged LCVs including numerous bacteria were observed in P. caudatum infected with L. pneumophila. An isogenic L. pneumophila lefA mutant exhibited decreased cytotoxicity toward P. caudatum and impaired the modification of LCVs, resulting in the establishment of endosymbiosis between them. Our results suggest that L. pneumophila may have a mechanism to switch their endosymbiosis in protistan hosts in the environment.
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