Related Experiment Video
Updated: Jul 11, 2026

Bio-energetics Investigation of Candida albicans Using Real-time Extracellular Flux Analysis
Published on: March 19, 2019
Identification and characterization of Cor33p, a novel protein implicated in tolerance towards oxidative stress in
1Fraunhofer, IGP, Inst. f. Grenzflächen- und Bioverfahrenstechnik, Nobelstr. 12, 70569 Stuttgart, Germany.
Abstract:
We applied two-dimensional gel electrophoresis to identify downstream effectors of CPH1 and EFG1 under hypha-inducing conditions in Candida albicans. Among the proteins that were expressed in wild-type cells but were strongly downregulated in a cph1Delta/efg1Delta double mutant in alpha-minimal essential medium at 37 degrees C, we could identify not-yet-characterized proteins, including Cor33-1p and Cor33-2p. The two proteins are almost identical (97% identity) and represent products of allelic isoforms of the same gene. Cor33p is highly similar to Cip1p from Candida sp. but lacks any significant homology to proteins from Saccharomyces cerevisiae. Strikingly, both proteins share homology with phenylcoumaran benzylic ether reductases and isoflavone reductases from plants. For other hypha-inducing media, like yeast-peptone-dextrose (YPD) plus serum at 37 degrees C, we could not detect any transcription for COR33 in wild-type cells, indicating that Cor33p is not hypha specific. In contrast, we found a strong induction for COR33 when cells were treated with 5 mM hydrogen peroxide. However, under oxidative conditions, transcription of COR33 was not dependent on EFG1, indicating that other regulatory factors are involved. In fact, upregulation depends on CAP1 at least, as transcript levels were clearly reduced in a Deltacap1 mutant strain under oxidative conditions. Unlike in wild-type cells, transcription of COR33 in a tsa1Delta mutant can be induced by treatment with 0.1 mM hydrogen peroxide. This suggests a functional link between COR33 and thiol-specific antioxidant-like proteins that are important in the oxidative-stress response in yeasts. Concordantly, cor33Delta deletion mutants show retarded growth on YPD plates supplemented with hydrogen peroxide, indicating that COR33 in general is implicated in conferring tolerance toward oxidative stress on Candida albicans.
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.
More Related Videos
09:44Small-Scale Plasma Membrane Preparation for the Analysis of Candida albicans Cdr1-mGFPHis
Published on: June 13, 2021
07:48Genome-wide Profiling of Transcription Factor-DNA Binding Interactions in Candida albicans: A Comprehensive CUT&RUN Method and Data Analysis Workflow
Published on: April 1, 2022