Mnn10 Maintains Pathogenicity in Candida albicans by Extending α-1,6-Mannose Backbone to Evade Host Dectin-1 Mediated

Shi Qun Zhang1, Zui Zou2, Hui Shen3

  • 1Shanghai Tenth People's Hospital, and Department of Pharmacology, Tongji University School of Medicine, Shanghai, PR China.

Plos Pathogens
|May 5, 2016
PubMed

Insights

Mnn10 enzyme in Candida albicans is crucial for pathogenicity by shielding immune-triggering beta-glucans. Inhibiting Mnn10 enhances antifungal immunity and reduces virulence, offering a potential therapeutic target.

Area of Science:

  • Mycology
  • Immunology
  • Molecular Biology

Background:

  • The cell wall of Candida albicans is vital for its pathogenicity.
  • Mannan, a component of the cell wall, contributes to pathogenesis, but the mechanism is unclear.
  • Understanding cell wall dynamics is key to combating fungal infections.

Purpose of the Study:

  • To identify novel factors involved in Candida albicans cell wall biosynthesis and pathogenicity.
  • To elucidate the role of Mnn10 in mannan structure and its impact on host immune recognition.
  • To explore Mnn10 as a potential therapeutic target against candidiasis.

Main Methods:

  • Genetic deletion of the MNN10 gene in Candida albicans.
  • Analysis of cell wall composition and polysaccharide organization in wild-type and mutant strains.
  • In vivo studies using a murine systemic candidiasis model.
  • In vitro assessment of immune cell responses (macrophages, Th1/Th17 cells) and cytokine production.
  • Investigation of beta-glucan exposure and Dectin-1 receptor interaction.

Main Results:

  • Mnn10 is essential for alpha-1,6-mannose backbone biosynthesis and cell wall organization.
  • Deletion of MNN10 significantly attenuated Candida albicans pathogenicity in vivo.
  • Mnn10 deletion enhanced Th1/Th17 cell-mediated immunity and neutrophil/monocyte recruitment.
  • Mnn10 mutant strains exposed surface beta-glucan, enhancing Dectin-1 dependent macrophage activation and cytokine secretion.
  • Inhibition of alpha-1,6-mannose extension did not affect in vitro invasion but restored invasive capacity in athymic mice.

Conclusions:

  • The alpha-1,6-mannose backbone, synthesized by Mnn10, is critical for Candida albicans pathogenesis by masking beta-glucan from host immune recognition.
  • Mnn10 plays a key role in immune evasion by preventing Dectin-1 mediated immune responses.
  • Targeting Mnn10 and alpha-1,6-mannose extension presents a promising strategy to reduce Candida albicans pathogenicity and enhance antifungal immunity.

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