Identification and characterization of Cor33p, a novel protein implicated in tolerance towards oxidative stress in

K Sohn1, M Roehm, C Urban

  • 1Fraunhofer, IGP, Inst. f. Grenzflächen- und Bioverfahrenstechnik, Nobelstr. 12, 70569 Stuttgart, Germany.

Eukaryotic Cell
|December 13, 2005
PubMed

Insights

Researchers identified Cor33p, a novel protein in Candida albicans, involved in oxidative stress tolerance. Its gene transcription is regulated by CAP1 and linked to thiol-specific antioxidant proteins, crucial for yeast survival.

Area of Science:

  • Mycology
  • Molecular Biology
  • Biochemistry

Background:

  • CPH1 and EFG1 are key regulators of hyphal development in Candida albicans.
  • Understanding downstream effectors of these pathways is crucial for deciphering fungal morphogenesis and stress responses.

Purpose of the Study:

  • To identify novel downstream effectors of CPH1 and EFG1 in Candida albicans.
  • To characterize the function and regulation of the newly identified protein Cor33p, particularly its role in oxidative stress response.

Main Methods:

  • Two-dimensional gel electrophoresis was used to compare protein expression between wild-type and mutant strains.
  • Quantitative PCR (qPCR) was employed to analyze COR33 gene transcription under various conditions.
  • Gene deletion mutants (cph1Δ/efg1Δ, Deltacap1, tsa1Δ, cor33Δ) were utilized to investigate gene function and regulation.

Main Results:

  • Cor33p, a novel protein highly similar to plant reductases, was identified as a downstream effector of CPH1/EFG1 signaling.
  • COR33 transcription is not hypha-specific but is strongly induced by hydrogen peroxide (oxidative stress).
  • COR33 induction under oxidative stress is dependent on CAP1 and TSA1, suggesting a link to thiol-specific antioxidant pathways.
  • cor33Δ mutants exhibit reduced growth under oxidative stress, confirming Cor33p's role in conferring tolerance.

Conclusions:

  • Cor33p is a novel protein in Candida albicans implicated in oxidative stress tolerance.
  • The regulation of COR33 involves CAP1 and potentially interacts with thiol-specific antioxidant systems.
  • Cor33p represents a potential target for understanding and combating oxidative stress in pathogenic fungi.

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