Lipid Flippase Subunit Cdc50 Mediates Drug Resistance and Virulence in Cryptococcus neoformans

Wei Huang1, Guojian Liao2, Gregory M Baker1

  • 1Public Health Research Institute Center, New Jersey Medical School, Rutgers University, Newark, New Jersey, USA.

Mbio
|May 12, 2016
PubMed
Abstract

Insights

Cryptococcus neoformans resistance to echinocandin antifungals is linked to the CDC50 gene, which regulates membrane lipids. This finding reveals a new drug target for treating fungal infections and improving virulence.

Area of Science:

  • Mycology
  • Molecular Biology
  • Drug Discovery

Background:

  • Cryptococcus neoformans causes fungal meningitis, with limited treatment options.
  • Azoles are fungistatic, and echinocandins are ineffective against C. neoformans.
  • The mechanism of echinocandin resistance in C. neoformans is unknown.

Purpose of the Study:

  • To elucidate the mechanism of echinocandin resistance in C. neoformans.
  • To identify potential drug targets for cryptococcosis treatment.

Main Methods:

  • Screened gene disruption and deletion libraries for caspofungin sensitivity.
  • Identified a mutation in CDC50, encoding the beta-subunit of membrane lipid flippase.
  • Assessed the role of CDC50 in drug resistance, membrane integrity, and virulence.

Main Results:

  • Loss of CDC50 (cdc50Δ) increased sensitivity to caspofungin and fluconazole.
  • cdc50Δ cells exhibited plasma membrane defects and increased phosphatidylserine on the surface.
  • CDC50 is essential for C. neoformans virulence in a murine model and resistance to macrophage killing.

Conclusions:

  • The membrane lipid flippase subunit CDC50 is crucial for C. neoformans innate resistance to echinocandins.
  • CDC50 plays a significant role in fungal virulence and macrophage evasion.
  • Lipid flippase represents a potential therapeutic target for cryptococcosis.