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Published on: November 8, 2006
A p21-activated kinase is required for conidial germination in Penicillium marneffei
Kylie J Boyce1, Alex Andrianopoulos
1Department of Genetics, University of Melbourne, Victoria, Australia.
Abstract:
Asexual spores (conidia) are the infectious propagules of many pathogenic fungi, and the capacity to sense the host environment and trigger conidial germination is a key pathogenicity determinant. Germination of conidia requires the de novo establishment of a polarised growth axis and consequent germ tube extension. The molecular mechanisms that control polarisation during germination are poorly understood. In the dimorphic human pathogenic fungus Penicillium marneffei, conidia germinate to produce one of two cell types that have very different fates in response to an environmental cue. At 25 degrees C, conidia germinate to produce the saprophytic cell type, septate, multinucleate hyphae that have the capacity to undergo asexual development. At 37 degrees C, conidia germinate to produce the pathogenic cell type, arthroconidiating hyphae that liberate uninucleate yeast cells. This study shows that the p21-activated kinase pakA is an essential component of the polarity establishment machinery during conidial germination and polarised growth of yeast cells at 37 degrees C but is not required for germination or polarised growth at 25 degrees C. Analysis shows that the heterotrimeric G protein alpha subunit GasC and the CDC42 orthologue CflA lie upstream of PakA for germination at both temperatures, while the Ras orthologue RasA only functions at 25 degrees C. These findings suggest that although some proteins that regulate the establishment of polarised growth in budding yeast are conserved in filamentous fungi, the circuitry and downstream effectors are differentially regulated to give rise to distinct cell types.
Insights
Polarity establishment during fungal spore germination is temperature-dependent. The p21-activated kinase PakA is crucial for pathogenic yeast cell development at 37°C but not for saprophytic hyphae at 25°C.
Area of Science:
- Medical Mycology
- Cell Biology
- Molecular Genetics
Background:
- Fungal spores (conidia) are key infectious agents, requiring environmental sensing for germination and pathogenicity.
- Conidial germination involves establishing a polarized growth axis, a poorly understood process.
- The dimorphic fungus *Penicillium marneffei* exhibits distinct germination pathways at 25°C (saprophytic hyphae) and 37°C (pathogenic yeast cells).
Purpose of the Study:
- To elucidate the molecular mechanisms controlling polarity establishment during *Penicillium marneffei* conidial germination.
- To investigate the role of p21-activated kinase (PakA) in differential cell type development.
- To identify upstream regulators of polarity during germination at distinct temperatures.
Main Methods:
- Genetic analysis of *Penicillium marneffei* mutants.
- Comparative study of conidial germination and polarized growth at 25°C and 37°C.
- Investigating the function of PakA, GasC, CflA, and RasA in polarity establishment.
Main Results:
- The p21-activated kinase PakA is essential for polarity and yeast cell formation at 37°C but dispensable at 25°C.
- Heterotrimeric G protein alpha subunit GasC and CDC42 orthologue CflA function upstream of PakA at both temperatures.
- Ras orthologue RasA is specifically required for polarized growth at 25°C.
Conclusions:
- Polarity establishment during fungal germination involves temperature-specific regulatory pathways.
- PakA acts as a key effector in the pathogenic yeast developmental pathway at 37°C.
- Differential regulation of conserved polarity proteins contributes to distinct cell fates in *Penicillium marneffei*.
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