Aspartyl peptidase May1 induces host inflammatory response by altering cell wall composition in the fungal pathogen

Yeqi Li1, Benjamin Chadwick2, Tuyetnhu Pham2

  • 1Department of Microbiology, University of Georgia, Athens, Georgia, USA.

Mbio
|May 14, 2024
PubMed

Insights

The aspartyl peptidase May1 weakens the Cryptococcus neoformans cell wall in acidic conditions by reducing chitosan levels, increasing pathogen-associated molecular pattern (PAMP) exposure and host inflammation. This study reveals May1

Area of Science:

  • Mycology
  • Pathogen Biology
  • Molecular Biology

Background:

  • Cryptococcus neoformans causes deadly meningoencephalitis, with its cell wall and capsule crucial for virulence.
  • The fungal cell wall, rich in chitosan, is essential for cryptococcal integrity and immune evasion.
  • Acidic pH compromises the cell wall, increasing pathogen-associated molecular pattern (PAMP) exposure and host immune response.

Purpose of the Study:

  • To elucidate the molecular mechanism of cell wall remodeling in Cryptococcus neoformans under acidic conditions.
  • To investigate the role of the aspartyl peptidase May1 in cryptococcal cell wall integrity and host immune response.
  • To identify potential targets for compromising fungal pathogen cell wall.

Main Methods:

  • Screening for genes involved in cryptococcal tolerance to high CO2 levels.
  • Investigating the effect of May1 overexpression and deletion on cell wall composition and PAMP exposure.
  • Analyzing the interaction between May1 and Chs3 (chitin synthase) in acidic environments.

Main Results:

  • May1 overexpression increases cell size and PAMP exposure, leading to hyper-inflammation.
  • May1 deletion reduces cell size and PAMP exposure, attenuating the host response.
  • May1 degrades Chs3, reducing chitosan levels and weakening the cell wall in acidic conditions.
  • Overexpression of CHS3 rescues the cell wall defects caused by May1 in acidic media.

Conclusions:

  • May1 remodels the cryptococcal cell wall in acidic pH by reducing chitosan levels via Chs3 degradation.
  • May1's activity contributes to cryptococcal virulence by modulating cell wall integrity and host immune recognition.
  • Targeting May1 could be a strategy to compromise Cryptococcus neoformans cell wall integrity and combat infection.