Stimulation of autophagy suppresses the intracellular survival of Burkholderia pseudomallei in mammalian cell lines

被引:132
作者
Cullinane, Meabh [2 ,4 ]
Gong, Lan [1 ,5 ]
Li, Xuelei [1 ,5 ]
Lazar-Adler, Natalie [2 ,4 ]
Tra, Thien [1 ]
Wolvetang, Ernst [3 ,6 ]
Prescott, Mark [1 ,5 ]
Boyce, John D. [2 ,5 ]
Devenish, Rodney J. [1 ,5 ]
Adler, Ben [2 ,4 ,5 ]
机构
[1] Monash Univ, Dept Biochem & Mol Biol, Melbourne, Vic 3800, Australia
[2] Monash Univ, Dept Microbiol, Melbourne, Vic 3800, Australia
[3] Monash Univ, Dept Anat & Cell Biol, Melbourne, Vic 3800, Australia
[4] Monash Univ, Australian Bacterial Pathogenesis Program, Melbourne, Vic 3800, Australia
[5] Monash Univ, Australian Res Council, Ctr Excellence Struct & Funct Microbial Genom, Melbourne, Vic 3800, Australia
[6] Monash Univ, Australian Stem Cell Ctr, Melbourne, Vic 3800, Australia
基金
英国医学研究理事会; 澳大利亚研究理事会;
关键词
Burkholderia pseudomallei; autophagosome; GFP-LC3; incracellular survival; MEF cells; RAW; 264.7; cells;
D O I
10.4161/auto.6246
中图分类号
Q2 [细胞生物学];
学科分类号
071009 [细胞生物学]; 090102 [作物遗传育种];
摘要
Burkholderia pseudomallei is the causative agent of melioidosis, a tropical infection of humans and other animals. The bacterium is an intracellular pathogen that can escape from endosomes into the host cytoplasm, where it replicates and infects adjacent cells. We investigated the role played by autophagy in the intracellular survival of B. pseudomallei in phagocytic and non-phagocytic cell lines. Aurophagy was induced in response to B. pseudomallei invasion of murine macrophage (RAW 264.7) cells and a proportion of the bacteria co-localized with the autophagy effector protein LC3, a marker for autophagosome formation. Pharmacological stimulation of autophagy in RAW 264.7 and murine embryonic fibroblast (MEF) cell lines resulted in increased co-localization of B. pseudomallei with LC3 while basal levels of co-localization could be abrogated using inhibitors of the autophagic pathway. Furthermore, induction of autophagy decreased the intracellular survival of B. pseudomallei in these cell lines, but bacteria] survival was not affected in MEF cell lines deficient in autophagy. Treatment of infected macrophages with chloramphenicol increased the proportion of bacteria within autophagosomes indicating that autophagic evasion is an active process relying on bacteria] protein synthesis. Consistent with this hypothesis, we identified a B. pseudomallei type III secreted (TTS) protein, BopA, which plays a role in mediating bacterial evasion of autophagy. We conclude that the autophagic pathway is a component of the innate defense system against invading B. pseudomallei, but which the bacteria can actively evade. However, when autophagy is pharmacologically induced using rapamycin, bacteria are actively sequestered in autophagosomes, ultimately decreasing their survival.
引用
收藏
页码:744 / 753
页数:10
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