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Updated: Sep 25, 2025

Microscopy of Fission Yeast Sexual Lifecycle
Published on: March 9, 2016
A Velvet Transcription Factor Specifically Activates Mating through a Novel Mating-Responsive Protein in the Human
Huimin Liu1,2, Xiaoxia Yao2,3, Weixin Ke2,3
1School of Life Sciences, Division of Life Sciences and Medicine, University of Science and Technology of China (USTC), Hefei, China.
Abstract:
Sexual reproduction facilitates infection by the production of both a lineage advantage and infectious sexual spores in the ubiquitous human fungal pathogen Cryptococcus deneoformans. However, the regulatory determinants specific for initiating mating remain poorly understood. Here, we identified a velvet family regulator, Cva1, that strongly promotes sexual reproduction in C. deneoformans. This regulation was determined to be specific, based on a comprehensive phenotypic analysis of cva1Δ under 26 distinct in vitro and in vivo growth conditions. We further revealed that Cva1 plays a critical role in the initiation of early mating events, including sexual cell-cell fusion, but is not important for the late sexual development stages or meiosis. Thus, Cva1 specifically contributes to mating activation. Importantly, a novel mating-responsive protein, Cfs1, serves as the key target of Cva1 during mating, since its absence nearly blocks cell-cell fusion in C. deneoformans and its sister species C. neoformans. Together, our findings provide insight into how C. deneoformans ensures the regulatory specificity of mating. IMPORTANCE The human fungal pathogen C. deneoformans is a model organism for studying fungal sexual reproduction, which is considered to be important to infection. However, the specific regulatory determinants for activation of sexual reproduction remain poorly understood. In this study, by combining transcriptomic and comprehensive phenotypic analysis, we identified a velvet family regulator Cva1 that specifically and critically elicits early mating events, including sexual cell-cell fusion. Significantly, Cva1 induces mating through the novel mating-responsive protein Cfs1, which is essential for cell-cell fusion in C. deneoformans and its sister species C. neoformans. Considering that Cva1 and Cfs1 are highly conserved in species belonging to Cryptococcaeceae, they may play conserved and specific roles in the initiation of sexual reproduction in this important fungal clade, which includes multiple human fungal pathogens.
Insights
Researchers identified Cva1, a regulator that specifically activates sexual reproduction in the fungal pathogen Cryptococcus deneoformans. Cva1 targets Cfs1, a protein essential for cell fusion during mating, offering insights into fungal pathogen regulation.
Area of Science:
- Mycology
- Molecular Biology
- Infectious Diseases
Background:
- Sexual reproduction in *Cryptococcus deneoformans* enhances infection through lineage advantage and infectious spore production.
- The specific regulatory mechanisms initiating mating in *C. deneoformans* are not well understood.
Purpose of the Study:
- To identify key regulatory factors controlling the initiation of sexual reproduction in *C. deneoformans*.
- To elucidate the role of identified regulators in mating and sexual development.
Main Methods:
- Comprehensive phenotypic analysis of *cva1* deletion mutants under 26 *in vitro* and *in vivo* conditions.
- Transcriptomic analysis to identify mating-responsive targets.
- Genetic analysis of the interaction between Cva1 and Cfs1.
Main Results:
- A velvet family regulator, Cva1, was identified as a strong promoter of sexual reproduction.
- Cva1 specifically activates early mating events, including cell-cell fusion, but not later stages like meiosis.
- The mating-responsive protein Cfs1 was identified as a critical target of Cva1, essential for cell fusion in *C. deneoformans* and *C. neoformans*.
Conclusions:
- Cva1 is a key regulator for mating activation in *C. deneoformans*, ensuring regulatory specificity.
- Cva1-Cfs1 interaction is crucial for initiating sexual cell-cell fusion.
- These conserved regulators may play significant roles in sexual reproduction across the *Cryptococcaeceae* family, including human pathogens.
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