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Applying Fluorescence Resonance Energy Transfer FRET to Examine Effector Translocation Efficiency by Coxiella burnetii during siRNA Silencing
Published on: July 6, 2016
The multifunction Coxiella effector Vice stimulates macropinocytosis and interferes with the ESCRT machinery
Arthur Bienvenu1, Melanie Burette1, Franck Cantet1
1Institut de Recherche en Infectiologie de Montpellier (IRIM), CNRS, Université de Montpellier, Montpellier 34090, France.
Abstract:
Intracellular bacterial pathogens divert multiple cellular pathways to establish their niche and persist inside their host. Coxiella burnetii, the causative agent of Q fever, secretes bacterial effector proteins via its Type 4 secretion system to generate a Coxiella-containing vacuole (CCV). Manipulation of lipid and protein trafficking by these effectors is essential for bacterial replication and virulence. Here, we have characterized the lipid composition of CCVs and found that the effector Vice interacts with phosphoinositides and membranes enriched in phosphatidylserine and lysobisphosphatidic acid. Remarkably, eukaryotic cells ectopically expressing Vice present compartments that resemble early CCVs in both morphology and composition. We found that the biogenesis of these compartments relies on the double function of Vice. The effector protein initially localizes at the plasma membrane of eukaryotic cells where it triggers the internalization of large vacuoles by macropinocytosis. Then, Vice stabilizes these compartments by perturbing the ESCRT machinery. Collectively, our results reveal that Vice is an essential C. burnetii effector protein capable of hijacking two major cellular pathways to shape the bacterial replicative niche.
Insights
Coxiella burnetii effector protein Vice hijacks host cell pathways. Vice induces macropinocytosis and stabilizes compartments, shaping the bacterial vacuole for pathogen survival.
Area of Science:
- Microbiology
- Cell Biology
- Pathogen-Host Interactions
Background:
- Intracellular bacteria manipulate host pathways for survival.
- Coxiella burnetii causes Q fever and forms a unique vacuole (CCV).
- Bacterial effector proteins are crucial for CCV biogenesis and virulence.
Purpose of the Study:
- To characterize the lipid composition of CCVs.
- To investigate the function of the C. burnetii effector protein Vice.
- To understand how Vice shapes the bacterial replicative niche.
Main Methods:
- Lipidomic analysis of CCVs.
- Ectopic expression of Vice in eukaryotic cells.
- Analysis of cellular compartment morphology and composition.
- Investigation of Vice's interaction with cellular machinery like ESCRT.
Main Results:
- Vice interacts with phosphoinositides and membranes rich in phosphatidylserine and lysobisphosphatidic acid.
- Ectopic Vice expression creates compartments resembling early CCVs.
- Vice induces macropinocytosis for vacuole internalization.
- Vice stabilizes these compartments by interfering with the ESCRT machinery.
Conclusions:
- Vice is an essential C. burnetii effector.
- Vice utilizes a dual mechanism involving macropinocytosis and ESCRT perturbation.
- Vice effectively shapes the bacterial replicative niche for C. burnetii survival.
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