Role of Glycogen Metabolism in Clostridioides difficile Virulence
Hasan, M. K.; pizarro-guajardo, M.; Sanchez, J.; Govind, R.
Show abstract
Glycogen plays a vital role as an energy reserve in various bacterial and fungal species. Clostridioides difficile possesses a glycogen metabolism operon that contains genes for both glycogen synthesis and utilization. In our investigation, we focused on understanding the significance of glycogen metabolism in the physiology and pathogenesis of C. difficile. To explore this, we engineered a C. difficile JIR8094 strain lacking glycogen synthesis capability by introducing a group II intron into the glgC gene, the operons first component. Quantification of intracellular glycogen levels validated the impact of this modification. Interestingly, the mutant strain exhibited a 1.5-fold increase in toxin production compared to the parental strain, without significant changes in sporulation rate. Our analysis also revealed that wild-type C. difficile spores contained glycogen, whereas spores from the mutant strain lacking stored glycogen showed increased sensitivity to physical and chemical treatments and had a shorter storage life. By suppressing glgP expression, the gene coding for glycogen-phosphorylase, via CRISPRi, we demonstrated that glycogen accumulation but not the utilization is needed for spore resilience in C. difficile. Transmission Electron Microscopy (TEM) analysis revealed a significantly lower core/cortex ratio in glgC mutant strain spores. In hamster challenge experiments, both the parental and glgC mutant strains colonized hosts similarly; however, the mutant strain failed to induce infection relapse after antibiotic treatment cessation. These findings highlight the importance of glycogen metabolism in C. difficile spore resilience and suggest its role in disease relapse. ImportanceThis study on the role of glycogen metabolism in C. difficile highlights its critical involvement in the pathogens energy management, its pathogenicity and resilience. Our results also revealed that glycogen presence in spores is pivotal for their structural integrity and resistance to adverse conditions, which is essential for their longevity and infectivity. Importantly, the inability of the mutant strain to cause infection relapse in hamsters post-antibiotic treatment pinpoints a potential target for therapeutic interventions, highlighting the importance of glycogen in disease dynamics. This research thus significantly advances our understanding of C. difficile physiology and pathogenesis, offering new avenues for combating its persistence and recurrence.
Matching journals
The top 8 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Assessment of chemical methods in the extraction of spore surface layers in Clostridioides difficile spores 94%
- Controlling the Growth of the Skin Commensal Staphylococcus epidermidis Using D-Alanine Auxotrophy 94%
- Functional characterization of clinical isolates of the opportunistic fungal pathogen Aspergillus nidulans 94%
Similar papers in this journal
- A novel bacteriophage with broad host-range against Clostridioides difficile ribotype 078 elucidates the phage receptor. 94%
- Soil collected in the Great Smoky Mountains National Park yielded a novel Listeria species, L. swaminathanii, effectively expanding the sensu stricto clade to ten species 93%
- Visualization of SpoVAEa protein dynamics in dormant spores of Bacillus cereus and dynamic changes in their germinosomes and SpoVAEa during germination 93%
Similar papers in this journal
- Lactiplantibacillus plantarum Membrane Vesicles (MVs) Exhibit Immunomodulatory and Bactericidal Effects Against Escherichia coli and Salmonella Typhimurium 94%
- Genomic Evidence of Environmental and Resident Salmonella Senftenberg and Montevideo Contamination in the Pistachio Supply-chain 93%
- Improved transformation efficiency of group A Streptococcus by inactivation of a type I restriction modification system 93%
Similar papers in this journal
- The small acid-soluble proteins of Clostridioides difficile are important for UV resistance and serve as a check point for sporulation. 97%
- Glucosyltransferase-dependent and independent effects of Clostridioides difficile toxins during infection 95%
- Candida auris undergoes adhesin-dependent and -independent cellular aggregation 95%
Similar papers in this journal
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.