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A Rapid and Efficient Method for Assessing Pathogenicity of Ustilago maydis on Maize and Teosinte Lines
Published on: January 4, 2014
Identification of O-mannosylated virulence factors in Ustilago maydis
Alfonso Fernández-Álvarez1, Miriam Marín-Menguiano, Daniel Lanver
1Centro Andaluz de Biología del Desarrollo, Universidad Pablo de Olavide, Consejo Superior de Investigaciones Científicas, Sevilla, Spain.
Abstract:
The O-mannosyltransferase Pmt4 has emerged as crucial for fungal virulence in the animal pathogens Candida albicans or Cryptococcus neoformans as well as in the phytopathogenic fungus Ustilago maydis. Pmt4 O-mannosylates specific target proteins at the Endoplasmic Reticulum. Therefore a deficient O-mannosylation of these target proteins must be responsible for the loss of pathogenicity in pmt4 mutants. Taking advantage of the characteristics described for Pmt4 substrates in Saccharomyces cerevisiae, we performed a proteome-wide bioinformatic approach to identify putative Pmt4 targets in the corn smut fungus U. maydis and validated Pmt4-mediated glycosylation of candidate proteins by electrophoretic mobility shift assays. We found that the signalling mucin Msb2, which regulates appressorium differentiation upstream of the pathogenicity-related MAP kinase cascade, is O-mannosylated by Pmt4. The epistatic relationship of pmt4 and msb2 showed that both are likely to act in the same pathway. Furthermore, constitutive activation of the MAP kinase cascade restored appressorium development in pmt4 mutants, suggesting that during the initial phase of infection the failure to O-mannosylate Msb2 is responsible for the virulence defect of pmt4 mutants. On the other hand we demonstrate that during later stages of pathogenic development Pmt4 affects virulence independently of Msb2, probably by modifying secreted effector proteins. Pit1, a protein required for fungal spreading inside the infected leaf, was also identified as a Pmt4 target. Thus, O-mannosylation of different target proteins affects various stages of pathogenic development in U. maydis.
Insights
The O-mannosyltransferase Pmt4 is vital for fungal virulence. Pmt4 O-mannosylates proteins like Msb2, essential for early infection stages, and Pit1, crucial for later fungal spread in Ustilago maydis.
Area of Science:
- Mycology
- Molecular Biology
- Plant Pathology
Background:
- O-mannosylation is a critical post-translational modification in eukaryotes.
- The O-mannosyltransferase Pmt4 plays a role in fungal virulence.
- Understanding Pmt4's targets is key to deciphering its role in pathogenicity.
Purpose of the Study:
- Identify Pmt4 O-mannosylation targets in Ustilago maydis.
- Elucidate the role of Pmt4-mediated glycosylation in fungal virulence.
- Investigate the functional relationship between Pmt4, Msb2, and pathogenicity.
Main Methods:
- Proteome-wide bioinformatic analysis to identify Pmt4 targets.
- Electrophoretic mobility shift assays to validate O-mannosylation.
- Epistasis analysis and genetic manipulation to study pathway interactions.
Main Results:
- Identified Msb2 as a Pmt4 O-mannosylation target, crucial for appressorium formation.
- Demonstrated that Pmt4 acts in the same pathway as Msb2 for early infection.
- Showed Pmt4 also targets Pit1, affecting later stages of fungal spread independently of Msb2.
Conclusions:
- Pmt4-mediated O-mannosylation of Msb2 is essential for initial Ustilago maydis infection stages.
- Pmt4 influences later pathogenic development through Msb2-independent targets like Pit1.
- O-mannosylation by Pmt4 is a multifaceted regulator of fungal virulence at various developmental stages.

