Interactions of microorganisms with host mucins: a focus on Candida albicans.

FEMS Microbiol Rev

Department of Molecular and Cell Biology, University of California - Merced, 5200 North Lake Rd., Merced, CA 95343, USA.

Published: September 2020

AI Article Synopsis

  • Mucus acts as a key defense mechanism in the body, providing physical and biological protection against pathogens, particularly through its main components called mucins.
  • Mucins play a crucial role in interacting with microorganisms, and though their effects on bacteria are somewhat understood, the interactions with fungi like Candida albicans are less clear.
  • Recent studies show that mucins can inhibit important virulence traits in C. albicans, suggesting they are under constant evolutionary pressure from the host's immune responses.

Article Abstract

Mucus is an important host innate defense factor that lines most epithelial cell layers of the body and provides crucial physical and biological protection against pathogenic microorganisms. Mucins are the main glycoproteins of mucus that are responsible for interacting with microorganisms and are critical for the antimicrobial properties of mucus. The mechanisms by which microorganisms interact with mucins are poorly understood, especially in terms of fungi, and these interactions are continually evolving. Work in bacterial pathogens has shown that mucins inhibit bacterial virulence traits, including quorum sensing, toxin secretion and biofilm formation. Among the fungal clade, the common opportunistic human fungal pathogen and commensal Candida albicans engages in constant battle with the host innate immune system. This battle creates strong selective pressures for C. albicans to evolve in response to the host. Recent work in C. albicans found that mucins inhibit specific virulence traits, such as surface adherence, filamentation, biofilm formation and the production of secreted proteases. Here we review the current knowledge of microbial interactions with mucins, with a special emphasis on the interactions between C. albicans and mucins.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC7476774PMC
http://dx.doi.org/10.1093/femsre/fuaa027DOI Listing

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