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Published on: October 25, 2017
Yersinia pestis Requires Host Rab1b for Survival in Macrophages
Michael G Connor1, Amanda R Pulsifer1, Christopher T Price1
1Department of Microbiology and Immunology and the Center for Predictive Medicine for Biodefense and Emerging Infectious Diseases, University of Louisville School of Medicine, Louisville, Kentucky, United States of America.
Abstract:
Yersinia pestis is a facultative intracellular pathogen that causes the disease known as plague. During infection of macrophages Y. pestis actively evades the normal phagosomal maturation pathway to establish a replicative niche within the cell. However, the mechanisms used by Y. pestis to subvert killing by the macrophage are unknown. Host Rab GTPases are central mediators of vesicular trafficking and are commonly targeted by bacterial pathogens to alter phagosome maturation and killing by macrophages. Here we demonstrate for the first time that host Rab1b is required for Y. pestis to effectively evade killing by macrophages. We also show that Rab1b is specifically recruited to the Yersinia containing vacuole (YCV) and that Y. pestis is unable to subvert YCV acidification when Rab1b expression is knocked down in macrophages. Furthermore, Rab1b knockdown also altered the frequency of association between the YCV with the lysosomal marker Lamp1, suggesting that Rab1b recruitment to the YCV directly inhibits phagosome maturation. Finally, we show that Rab1b knockdown also impacts the pH of the Legionella pneumophila containing vacuole, another pathogen that recruits Rab1b to its vacuole. Together these data identify a novel role for Rab1b in the subversion of phagosome maturation by intracellular pathogens and suggest that recruitment of Rab1b to the pathogen containing vacuole may be a conserved mechanism to control vacuole pH.
Insights
Host Rab1b protein is essential for Yersinia pestis evasion of macrophage killing. This protein is recruited to the Yersinia-containing vacuole, inhibiting its maturation and controlling vacuole pH.
Area of Science:
- Microbiology
- Cell Biology
- Immunology
Background:
- Yersinia pestis causes plague by evading macrophage defenses.
- Intracellular pathogens manipulate host vesicular trafficking, particularly Rab GTPases, to survive.
- Mechanisms by which Y. pestis subverts macrophage killing remain largely unknown.
Purpose of the Study:
- To investigate the role of host Rab GTPases in Yersinia pestis evasion of macrophage killing.
- To determine if Rab1b is recruited to the Yersinia-containing vacuole (YCV) and its effect on phagosome maturation.
Main Methods:
- Macrophage cell culture and knockdown of Rab1b expression.
- Confocal microscopy to track YCV and lysosomal markers (Lamp1).
- pH measurements of pathogen-containing vacuoles.
Main Results:
- Rab1b is required for Y. pestis to evade macrophage killing.
- Rab1b is recruited to the YCV, inhibiting its acidification and maturation.
- Rab1b knockdown affects phagosome maturation for both Y. pestis and Legionella pneumophila.
Conclusions:
- Host Rab1b plays a critical role in Yersinia pestis subversion of macrophage phagosome maturation.
- Rab1b recruitment to pathogen vacuoles is a conserved mechanism for controlling vacuole pH and inhibiting killing.
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