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Published on: November 8, 2006
Distinct STRIPAK subunits drive conserved and subunit-specific signaling programs in Cryptococcus neoformans
Patricia P Peterson1, Sarah Croog1, Yeseul Choi1
1Department of Molecular Genetics and Microbiology, Duke University Medical Center, Durham, North Carolina, USA.
The STRIPAK complex coordinates fungal virulence and genome stability in Cryptococcus neoformans. Core subunit loss impairs growth and virulence, while Mob3 deletion enhances it, revealing subunit-specific roles in host-pathogen interactions.
Area of Science:
- Mycology and Pathogenesis
- Molecular and Cell Biology
- Genetics and Genomics
Background:
- The striatin-interacting phosphatase and kinase (STRIPAK) complex is a conserved signaling hub regulating diverse cellular processes.
- Its role in human fungal pathogens, particularly in coordinating virulence and host adaptation, remains largely undefined.
- Cryptococcus neoformans, an opportunistic fungal pathogen, requires precise signaling for survival and pathogenesis within the host.
Purpose of the Study:
- To dissect the functions of the STRIPAK complex and its individual subunits in the opportunistic fungal pathogen Cryptococcus neoformans.
- To investigate the roles of STRIPAK in fungal growth, stress adaptation, cell cycle progression, morphogenesis, genome stability, and virulence.
- To elucidate the signaling pathways regulated by STRIPAK and its subunits using phosphoproteomic analyses.
Main Methods:
- Genetic analyses of STRIPAK subunit mutants (PPH22, FAR8, FAR9, FAR11, MOB3) in Cryptococcus neoformans.
- Phenotypic characterization including growth, stress adaptation, cell cycle, morphogenesis, and virulence assays in murine models.
- Genomic analyses for aneuploidy and instability, and phosphoproteomic profiling to identify signaling pathway alterations.
Main Results:
- Loss of core STRIPAK components (PPH22, FAR8, FAR9, FAR11) resulted in severe defects in growth, stress adaptation, cell cycle, and morphogenesis, alongside genome instability.
- FAR11 deletion led to avirulence, while FAR9 deletion caused delayed fatal disease with host-associated genome remodeling (chromosome 11 amplification).
- MOB3 deletion resulted in a hypervirulent phenotype, characterized by enhanced transmigration, macrophage survival, and increased dissemination via small-cell morphotypes.
Conclusions:
- The STRIPAK complex is a critical coordinator of genome stability, morphological plasticity, stress adaptation, and virulence in Cryptococcus neoformans.
- Individual STRIPAK subunits exhibit both shared and distinct functions, driving divergent signaling outputs that shape host-pathogen interactions.
- STRIPAK represents a central signaling hub and a potential target for antifungal intervention strategies.
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