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Updated: Sep 29, 2026

Generation and Multi-phenotypic High-content Screening of Coxiella burnetii Transposon Mutants
Published on: May 13, 2015
Coxiella burnetii localizes in a Rab7-labeled compartment with autophagic characteristics
Walter Berón1, Maximiliano G Gutierrez, Michel Rabinovitch
1Instituto de Histología y Embriología, Facultad de Ciencias Médicas, Universidad Nacional de Cuyo-CONICET, Mendoza 5500, Argentina.
Abstract:
The obligate intracellular bacterium Coxiella burnetii, the agent of Q fever in humans and of coxiellosis in other animals, survives and replicates within large, acidified, phagolysosome-like vacuoles known to fuse homo- and heterotypically with other vesicles. To further characterize these vacuoles, HeLa cells were infected with C. burnetii phase II; 48 h later, bacteria-containing vacuoles were labeled by LysoTracker, a marker of acidic compartments, and accumulated monodansylcadaverine and displayed protein LC3, both markers of autophagic vacuoles. Furthermore, 3-methyladenine and wortmannin, agents known to inhibit early stages in the autophagic process, each blocked Coxiella vacuole formation. These autophagosomal features suggest that Coxiella vacuoles interact with the autophagic pathway. The localization and role of wild-type and mutated Rab5 and Rab7, markers of early and late endosomes, respectively, were also examined to determine the role of these small GTPases in the trafficking of C. burnetii phase II. Green fluorescent protein (GFP)-Rab5 and GFP-Rab7 constructs were overexpressed and visualized by fluorescence microscopy. Coxiella-containing large vacuoles were labeled with wild-type Rab7 (Rab7wt) and with GTPase-deficient mutant Rab7Q67L, whereas no colocalization was observed with the dominant-negative mutant Rab7T22N. The vacuoles were also decorated by GFP-Rab5Q79L but not by GFP-Rab5wt. These results suggest that Rab7 participates in the biogenesis of the parasitophorous vacuoles.
Insights
Coxiella burnetii forms unique vacuoles by interacting with the host cell's autophagic pathway. Rab7 GTPase is crucial for the biogenesis of these Coxiella-containing vacuoles.
Area of Science:
- Microbiology
- Cell Biology
- Infectious Diseases
Background:
- Coxiella burnetii is an obligate intracellular bacterium causing Q fever.
- It replicates within specialized vacuoles that fuse with host vesicles.
- The biogenesis and trafficking of these vacuoles are not fully understood.
Purpose of the Study:
- To characterize the nature of Coxiella burnetii vacuoles.
- To investigate the involvement of the autophagic pathway in vacuole formation.
- To determine the role of Rab GTPases in Coxiella vacuole trafficking.
Main Methods:
- HeLa cells infected with C. burnetii phase II.
- Labeling of vacuoles with LysoTracker, monodansylcadaverine, and LC3.
- Inhibition of autophagy using 3-methyladenine and wortmannin.
- Overexpression of wild-type and mutant Rab5 and Rab7 proteins.
- Fluorescence microscopy to visualize protein localization.
Main Results:
- Coxiella vacuoles exhibit characteristics of autophagic vacuoles.
- Autophagy inhibitors blocked Coxiella vacuole formation.
- Rab7, particularly Rab7wt and Rab7Q67L, localized to Coxiella vacuoles, while Rab7T22N did not.
- A constitutively active mutant of Rab5 (Rab5Q79L) localized to the vacuoles, but wild-type Rab5 did not.
- These findings indicate Rab7's involvement in vacuole biogenesis.
Conclusions:
- Coxiella vacuoles interact with the host autophagic pathway.
- Rab7 plays a significant role in the biogenesis of Coxiella-containing vacuoles.
- Specific Rab GTPases mediate the trafficking and maturation of these essential bacterial compartments.
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