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Bio-energetics Investigation of Candida albicans Using Real-time Extracellular Flux Analysis
Published on: March 19, 2019
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.
Abstract:
Our published research has focused on the role of Goa1p, an apparent regulator of the Candida albicans mitochondrial complex I (CI). Lack of Goa1p affects optimum cell growth, CI activity and virulence. Eukaryotic CI is composed of a core of 14 alpha-proteobacterial subunit proteins and a variable number of supernumerary subunit proteins. Of the latter group of proteins, one (NUZM) is fungal specific and the other (NUXM) is found in fungi, algae and plants, but is not a mammalian CI subunit protein. We have established that NUXM is orf19.6607 and NUZM is orf19.287 in C. albicans. Herein, we validate both subunit proteins as NADH:ubiquinone oxidoreductases (NUO) and annotate their gene functions. To accomplish these objectives, we compared null mutants of each with wild type (WT) and gene-reconstituted strains. Genetic mutants of genes NUO1 (orf19.6607) and NUO2 (orf19.287), not surprisingly, each had reduced oxygen consumption, decreased mitochondrial redox potential, decreased CI activity, increased reactive oxidant species (ROS) and decreased chronological ageing in vitro. Loss of either gene results in disassembly of CI. Transcriptional profiling of both mutants indicated significant down-regulation of genes of carbon metabolism, as well as up-regulation of mitochondrial-associated gene families that may occur to compensate for the loss of CI activity. Profiling of both mutants also demonstrated a loss of cell wall β-mannosylation but not in a conserved CI subunit (ndh51Δ). The profiling data may indicate specific functions driven by the enzymatic activity of Nuo1p and Nuo2p. Of importance, each mutant is also avirulent in a murine blood-borne, invasive model of candidiasis associated with their reduced colonization of tissues. Based on their fungal specificity and roles in virulence, we suggest both as drug targets for antifungal drug discovery.
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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