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Updated: Jul 14, 2025

Biolistic Transformation of a Fluorescent Tagged Gene into the Opportunistic Fungal Pathogen Cryptococcus neoformans
Published on: March 19, 2015
The hybrid RAVE complex plays V-ATPase-dependent and -independent pathobiological roles in Cryptococcus neoformans
Jin-Tae Choi1, Yeseul Choi1, Yujin Lee1
1Department of Biotechnology, College of Life Science and Biotechnology, Yonsei University, Seoul, Korea.
Abstract:
V-ATPase, which comprises 13-14 subunits, is essential for pH homeostasis in all eukaryotes, but its proper function requires a regulator to assemble its subunits. While RAVE (regulator of H+-ATPase of vacuolar and endosomal membranes) and Raboconnectin-3 complexes assemble V-ATPase subunits in Saccharomyces cerevisiae and humans, respectively, the function of the RAVE complex in fungal pathogens remains largely unknown. In this study, we identified two RAVE complex components, Rav1 and Wdr1, in the fungal meningitis pathogen Cryptococcus neoformans, and analyzed their roles. Rav1 and Wdr1 are orthologous to yeast RAVE and human Rabconnectin-3 counterparts, respectively, forming the hybrid RAVE (hRAVE) complex. Deletion of RAV1 caused severe defects in growth, cell cycle control, morphogenesis, sexual development, stress responses, and virulence factor production, while the deletion of WDR1 resulted in similar but modest changes, suggesting that Rav1 and Wdr1 play central and accessary roles, respectively. Proteomics analysis confirmed that Wdr1 was one of the Rav1-interacting proteins. Although the hRAVE complex generally has V-ATPase-dependent functions, it also has some V-ATPase-independent roles, suggesting a unique role beyond conventional intracellular pH regulation in C. neoformans. The hRAVE complex played a critical role in the pathogenicity of C. neoformans, and RAV1 deletion attenuated virulence and impaired blood-brain barrier crossing ability. This study provides comprehensive insights into the pathobiological roles of the fungal RAVE complex and suggests a novel therapeutic strategy for controlling cryptococcosis.
Insights
The fungal RAVE complex, comprising Rav1 and Wdr1, is crucial for Cryptococcus neoformans growth, development, and virulence. Its disruption severely impacts fungal pathogenicity and blood-brain barrier crossing, suggesting therapeutic potential.
Area of Science:
- Mycology
- Molecular Biology
- Pathogenesis
Background:
- Vacuolar-type proton ATPase (V-ATPase) is vital for eukaryotic pH homeostasis.
- The RAVE complex regulates V-ATPase assembly in yeast and humans.
- The RAVE complex's role in fungal pathogens like Cryptococcus neoformans is largely unexplored.
Purpose of the Study:
- To identify and characterize RAVE complex components in Cryptococcus neoformans.
- To elucidate the roles of Rav1 and Wdr1 in fungal growth, development, and virulence.
- To investigate the V-ATPase-dependent and -independent functions of the fungal RAVE complex.
Main Methods:
- Gene deletion and phenotypic analysis of Cryptococcus neoformans mutants.
- Proteomics to identify protein interactions within the RAVE complex.
- Assessment of virulence factor production and pathogenicity in vivo.
Main Results:
- Rav1 and Wdr1 form a hybrid RAVE (hRAVE) complex in C. neoformans.
- Deletion of RAV1 caused severe defects in growth, development, and virulence.
- WDR1 deletion showed similar but less pronounced effects, indicating central and accessory roles for Rav1 and Wdr1, respectively.
- The hRAVE complex has both V-ATPase-dependent and -independent functions.
- RAV1 deletion attenuated fungal virulence and impaired blood-brain barrier crossing.
Conclusions:
- The fungal hRAVE complex plays critical roles beyond V-ATPase regulation in C. neoformans.
- Rav1 is essential, while Wdr1 plays a supporting role in the hRAVE complex.
- The hRAVE complex is a key determinant of C. neoformans pathogenicity.
- Targeting the fungal RAVE complex presents a potential therapeutic strategy against cryptococcosis.
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