The environmental niche of each fungus places distinct functional demands on the cell wall. Hence cell wall regulatory pathways may be highly divergent. We have pursued this hypothesis through analysis of Candida albicans transcription factor mutants that are hypersensitive to caspofungin, an inhibitor of beta-1,3-glucan synthase. We report here that mutations in SKO1 cause this phenotype. C. albicans Sko1 undergoes Hog1-dependent phosphorylation after osmotic stress, like its Saccharomyces cerevisiae orthologues, thus arguing that this Hog1-Sko1 relationship is conserved. However, Sko1 has a distinct role in the response to cell wall inhibition because 1) sko1 mutants are much more sensitive to caspofungin than hog1 mutants; 2) Sko1 does n...
International audienceSkn7 is a conserved fungal heat shock factor-type transcriptional regulator. I...
International audienceSkn7 is a conserved fungal heat shock factor-type transcriptional regulator. I...
Understanding the molecular mechanisms governing antifungal resistance is crucial for identifying ne...
The human fungal pathogen Candida albicans is constantly exposed to environmental challenges impacti...
The human fungal pathogen Candida albicans is constantly exposed to environmental challenges impacti...
The human fungal pathogen Candida albicans maintains pathogenic and commensal states primarily throu...
Protein kinases play key roles in signaling and response to changes in the external environment. The...
Candida albicans maintains both commensal and pathogenic states in humans. Here, we have defined the...
The fungal cell wall is vital for growth, development, and interaction of cells with their environme...
Different signal transduction pathways mediated by MAP kinases have been described in Candida albica...
Different signal transduction pathways mediated by MAP kinases have been described in Candida albica...
The cyclic AMP protein kinase A pathway governs numerous biological features of the fungal pathogen ...
Skn7 is a conserved fungal heat shock factor-type transcriptional regulator. It participates in main...
Skn7 is a conserved fungal heat shock factor-type transcriptional regulator. It participates in main...
Candida albicans displays the ability to adapt to a wide variety of environmental conditions, trigge...
International audienceSkn7 is a conserved fungal heat shock factor-type transcriptional regulator. I...
International audienceSkn7 is a conserved fungal heat shock factor-type transcriptional regulator. I...
Understanding the molecular mechanisms governing antifungal resistance is crucial for identifying ne...
The human fungal pathogen Candida albicans is constantly exposed to environmental challenges impacti...
The human fungal pathogen Candida albicans is constantly exposed to environmental challenges impacti...
The human fungal pathogen Candida albicans maintains pathogenic and commensal states primarily throu...
Protein kinases play key roles in signaling and response to changes in the external environment. The...
Candida albicans maintains both commensal and pathogenic states in humans. Here, we have defined the...
The fungal cell wall is vital for growth, development, and interaction of cells with their environme...
Different signal transduction pathways mediated by MAP kinases have been described in Candida albica...
Different signal transduction pathways mediated by MAP kinases have been described in Candida albica...
The cyclic AMP protein kinase A pathway governs numerous biological features of the fungal pathogen ...
Skn7 is a conserved fungal heat shock factor-type transcriptional regulator. It participates in main...
Skn7 is a conserved fungal heat shock factor-type transcriptional regulator. It participates in main...
Candida albicans displays the ability to adapt to a wide variety of environmental conditions, trigge...
International audienceSkn7 is a conserved fungal heat shock factor-type transcriptional regulator. I...
International audienceSkn7 is a conserved fungal heat shock factor-type transcriptional regulator. I...
Understanding the molecular mechanisms governing antifungal resistance is crucial for identifying ne...