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Author Spotlight: Identifying Compensatory Pathways in Malaria Parasites Containing Hypomorphic Allele of Essential Protein Kinases
Published on: November 22, 2024
Two‑component histidine kinase DRK1 is required for pathogenesis in Sporothrix schenckii
Zhenying Zhang1, Binbin Hou2, Yong Zhuo Wu2
1Department of Dermatology, University of Hong Kong‑Shenzhen Hospital, Shenzhen, Guangdong 518053, P.R. China.
Abstract:
Sporothrix schenckii is a pathogenic dimorphic fungus with a global distribution. It grows in a multicellular hyphal form at 25˚C and a unicellular yeast form at 37˚C. The morphological switch from mold to yeast form is obligatory for establishing pathogenicity in S. schenckii. Two‑component signaling systems are utilized by eukaryotes to sense and respond to external environmental changes. DRK1is a hybrid histidine kinase, which functions as a global regulator of dimorphism and virulence in Blastomyces dermatitidis and Histoplasma capsulatum. An intracellular soluble hybrid histidine kinase, homologous to DRK1 in B. dermatitidis, has previously been identified in S. schenckii and designated as SsDRK1. In the present study, the function of SsDRK1 was investigated using double stranded RNA interference mediated by Agrobacterium tumefaciens. SsDRK1 was demonstrated to be required for normal asexual development, yeast‑phase cell formation, cell wall composition and integrity, melanin synthesis, transcription of the morphogenesis‑associated gene Ste20 that is involved in the high osmolarity glycerol/mitogen‑activated protein kinase pathway, and pathogenicity of S. schenckii in a murine model of cutaneous infection. Further investigations into the signals SsDRK1 responds to, and the interactions of upstream transmembrane hybrid histidine kinases with SsDRK1, are required to uncover novel targets for anti‑fungal therapies.
Insights
The hybrid histidine kinase SsDRK1 is essential for Sporothrix schenckii pathogenicity. It regulates fungal development, cell wall integrity, and virulence, offering potential targets for antifungal therapies.
Area of Science:
- Mycology
- Molecular Biology
- Pathogenesis
Background:
- Sporothrix schenckii is a globally distributed dimorphic fungus.
- The transition from hyphal to yeast form is crucial for S. schenckii pathogenicity.
- Two-component signaling systems regulate eukaryotic responses to environmental changes.
Purpose of the Study:
- To investigate the function of the intracellular hybrid histidine kinase SsDRK1 in Sporothrix schenckii.
- To determine SsDRK1's role in fungal dimorphism, development, and virulence.
Main Methods:
- Double-stranded RNA interference (dsRNAi) mediated by Agrobacterium tumefaciens was used to study SsDRK1 function.
- Assessed asexual development, yeast-phase cell formation, cell wall properties, melanin synthesis, and Ste20 gene transcription.
- Evaluated pathogenicity in a murine model of cutaneous infection.
Main Results:
- SsDRK1 is required for normal asexual development and yeast-phase cell formation.
- SsDRK1 influences cell wall composition and integrity, and melanin synthesis.
- SsDRK1 regulates the transcription of the Ste20 gene and is essential for S. schenckii pathogenicity in vivo.
Conclusions:
- SsDRK1 is a critical regulator of dimorphism and virulence in Sporothrix schenckii.
- Understanding SsDRK1's signaling pathways may reveal novel antifungal therapeutic targets.
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