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Endoplasmic reticulum facilitates the coordinated division of Salmonella-containing vacuoles
Umesh Chopra1, Priyanka Bhansali1, Subba Rao Gangi Setty1
1Department of Microbiology and Cell Biology, Indian Institute of Science, Bangalore, Karnataka, India.
Abstract:
Salmonella Typhimurium (STM) resides in a membrane-bound compartment called the Salmonella-containing vacuole (SCV) in several infected cell types where bacterial and SCV division occur synchronously to maintain a single bacterium per vacuole. However, the mechanism behind this synchronous fission is not well understood. Fission of intracellular organelles is known to be regulated by the dynamic tubular endoplasmic reticulum (ER). In this study, we evaluated the role of ER in controlling SCV division. Interestingly, Salmonella-infected cells show activation of the unfolded protein response (UPR) and expansion of ER tubules. Altering the expression of ER morphology regulators, such as reticulon-4a (Rtn4a) and CLIMP63, significantly impacted bacterial proliferation, suggesting a potential role of tubular ER in facilitating SCV division. Live-cell imaging revealed the marking of tubular ER at the center of 78% of SCV division sites. This study also explored the role of SteA (a known Salmonella effector in modulating membrane dynamics) in coordinating the SCV division. SteA resides on the SCV membranes and helps form membrane contact between SCV and ER. The colocalization of ER with SCV enclosing STMΔsteA was significantly reduced, compared with SCV of STM WT or STMΔsteA:steA. STMΔsteA shows profound defects in SCV division, resulting in multiple bacteria in a single vacuole with proliferation defects. In vivo, the STMΔsteA shows a defect in colonization in the spleen and liver and affects the initial survival rate of mice. Overall, this study suggests a coordinated role of bacterial effector SteA in promoting ER contact/association with SCVs and regulating SCV division.IMPORTANCEThis study highlights the essential role of the host endoplasmic reticulum in facilitating SCV division and maintaining a single bacterium per vacuole. The Salmonella effector SteA helps maintain the single bacterium per vacuole state. In the absence of SteA, Salmonella resides as multiple bacteria within a single large vacuole. The STMΔsteA shows reduced proliferation under in vitro conditions and exhibits colonization defects in vivo, highlighting the importance of this effector in Salmonella pathogenesis. These findings suggest that targeting SteA could provide a novel therapeutic approach to inhibit Salmonella pathogenicity.
Insights
Salmonella Typhimurium bacteria coordinate their vacuole division with host cell endoplasmic reticulum. The bacterial effector SteA is crucial for this process, ensuring one bacterium per vacuole and aiding Salmonella pathogenesis.
Area of Science:
- Cell Biology
- Microbiology
- Infectious Diseases
Background:
- Salmonella Typhimurium resides within a Salmonella-containing vacuole (SCV).
- Synchronous division of bacteria and SCV is essential for maintaining one bacterium per vacuole.
- The endoplasmic reticulum (ER) is known to regulate organelle fission.
Purpose of the Study:
- To investigate the role of the host ER in SCV division.
- To elucidate the mechanism by which Salmonella maintains a single bacterium per vacuole.
- To determine the function of the Salmonella effector SteA in SCV division and host-pathogen interactions.
Main Methods:
- Live-cell imaging of infected cells.
- Analysis of ER morphology and its association with SCVs.
- Genetic manipulation of Salmonella effector SteA and ER morphology regulators (Rtn4a, CLIMP63).
- Assessment of bacterial proliferation and SCV division defects in vitro and in vivo.
Main Results:
- Salmonella infection activates the unfolded protein response and expands ER tubules.
- ER tubules are frequently found at SCV division sites.
- The Salmonella effector SteA mediates contact between SCVs and the ER.
- Salmonella lacking SteA (STMΔsteA) exhibit defective SCV division, leading to multiple bacteria per vacuole and impaired proliferation.
- STMΔsteA shows reduced colonization in mouse spleen and liver.
Conclusions:
- The host ER plays a critical role in facilitating SCV division.
- Salmonella effector SteA is essential for coordinating SCV division with the ER, maintaining the single bacterium per vacuole state.
- Defects in SteA function lead to impaired Salmonella proliferation and colonization, suggesting SteA as a potential therapeutic target.
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