Fungal-specific subunits of the Candida albicans mitochondrial complex I drive diverse cell functions including cell

Xiaodong She1,2, Kasra Khamooshi1, Yin Gao2

  • 1Department of Microbiology and Immunology, Georgetown University Medical Center, Washington, DC, USA.

Cellular Microbiology
|March 25, 2015
PubMed

Insights

The study identifies two fungal-specific mitochondrial complex I (CI) proteins, Nuo1p and Nuo2p, in Candida albicans. Loss of these proteins impairs CI function, reduces virulence, and suggests them as potential antifungal drug targets.

Area of Science:

  • Mycology
  • Molecular Biology
  • Biochemistry

Background:

  • Mitochondrial Complex I (CI) is crucial for cellular respiration.
  • Candida albicans CI includes fungal-specific subunits NUZM and NUXM.
  • Goa1p regulates CI, affecting growth, activity, and virulence.

Purpose of the Study:

  • To validate NUXM (orf19.6607) and NUZM (orf19.287) as NADH:ubiquinone oxidoreductases (NUO) in C. albicans.
  • To annotate the gene functions of these fungal-specific CI subunits.
  • To investigate their role in CI assembly, function, and virulence.

Main Methods:

  • Comparative analysis of null mutants (nuo1Δ, nuo2Δ) with wild-type and reconstituted strains.
  • Measurement of oxygen consumption, mitochondrial redox potential, and reactive oxygen species (ROS).
  • Transcriptional profiling and assessment of virulence in a murine candidiasis model.

Main Results:

  • nuo1Δ and nuo2Δ mutants exhibited reduced CI activity, oxygen consumption, and mitochondrial redox potential.
  • Loss of Nuo1p or Nuo2p led to CI disassembly, increased ROS, and decreased chronological lifespan.
  • Mutants showed impaired β-mannosylation and significantly reduced virulence in vivo, with decreased tissue colonization.

Conclusions:

  • Nuo1p and Nuo2p are essential fungal-specific CI subunits (NUO1 and NUO2) in C. albicans.
  • These proteins are critical for CI assembly, function, and fungal virulence.
  • Nuo1p and Nuo2p represent promising drug targets for developing novel antifungal therapies.

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