Helicobacter pylori HP0018 Has a Potential Role in the Maintenance of the Cell Envelope
Kyle Rosinke1, Vincent J Starai1,2, Timothy R Hoover1
1Department of Microbiology, University of Georgia, Athens, GA 30602, USA.
Abstract:
Helicobacter pylori is a bacterial pathogen that colonizes the human stomach, where it can cause a variety of diseases. H. pylori uses a cluster of sheathed flagella for motility, which is required for host colonization in animal models. The flagellar sheath is continuous with the outer membrane and is found in most Helicobacter species identified to date. HP0018 is a predicted lipoprotein of unknown function that is conserved in Helicobacter species that have flagellar sheaths but is absent in Helicobacter species that have sheath-less flagella. Deletion of hp0018 in H. pylori B128 resulted in the formation of long chains of outer membrane vesicles, which were most evident in an aflagellated variant of the Δhp0018 mutant that had a frameshift mutation in fliP. Flagellated cells of the Δhp0018 mutant possessed what appeared to be a normal flagellar sheath, suggesting that HP0018 is not required for sheath formation. Cells of the Δhp0018 mutant were also less helical in shape compared to wild-type cells. A HP0018-superfolder green fluorescent fusion protein expressed in the H. pylori Δhp0018 mutant formed fluorescent foci at the cell poles and lateral sites. Co-immunoprecipitation assays with HP0018 identified two enzymes involved in the modification of the cell wall peptidoglycan, AmiA and MltD, as potential HP0018 interaction partners. HP0018 may modulate the activity of AmiA or MltD, and in the absence of HP0018, the unregulated activity of these enzymes may alter the peptidoglycan layer in a manner that results in an altered cell shape and hypervesiculation.
Insights
The protein HP0018 influences Helicobacter pylori cell shape and outer membrane vesicle production. Its absence leads to altered cell morphology and increased vesicle formation, potentially impacting bacterial pathogenesis.
Area of Science:
- Microbiology
- Cell Biology
- Bacterial Pathogenesis
Background:
- Helicobacter pylori is a stomach pathogen causing various diseases.
- Motility via sheathed flagella is crucial for H. pylori colonization.
- HP0018 is a conserved protein in sheathed flagella species, but its function is unknown.
Purpose of the Study:
- To investigate the function of the conserved protein HP0018 in H. pylori.
- To determine the role of HP0018 in H. pylori cell shape and flagellar structure.
Main Methods:
- Gene deletion of hp0018 in H. pylori B128.
- Microscopy to observe cell morphology and flagellar sheaths.
- Fluorescent protein tagging of HP0018.
- Co-immunoprecipitation to identify interaction partners.
Main Results:
- Deletion of hp0018 caused altered cell shape (less helical) and hypervesiculation (long chains of outer membrane vesicles).
- HP0018 is not essential for flagellar sheath formation.
- HP0018 localizes to cell poles and lateral sites.
- HP0018 interacts with peptidoglycan modification enzymes AmiA and MltD.
Conclusions:
- HP0018 plays a role in regulating H. pylori cell shape and membrane vesicle production.
- HP0018 may modulate the activity of AmiA and MltD, affecting the peptidoglycan layer.
- Dysregulation of these processes in the absence of HP0018 could impact bacterial pathogenesis.
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