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Candida albicans

  • Minireview
    Intracellular Acetyl Unit Transport in Fungal Carbon Metabolism
    Karin Strijbis, Ben Distel
  • Articles
    Regulation of the Hypoxic Response in Candida albicans
    John M. Synnott, Alessandro Guida, Siobhan Mulhern-Haughey, Desmond G. Higgins, Geraldine Butler
  • Articles
    Endosomal and AP-3-Dependent Vacuolar Trafficking Routes Make Additive Contributions to Candida albicans Hyphal Growth and Pathogenesis
    Glen E. Palmer
  • Articles
    Recognition of Yeast by Murine Macrophages Requires Mannan but Not Glucan
    Sabine Keppler-Ross, Lois Douglas, James B. Konopka, Neta Dean
  • Articles
    Identification of a Cell Death Pathway in Candida albicans during the Response to Pheromone
    Kevin Alby, Dana Schaefer, Racquel Kim Sherwood, Stephen K. Jones, Richard J. Bennett
  • Articles
    Spitzenkörper, Exocyst, and Polarisome Components in Candida albicans Hyphae Show Different Patterns of Localization and Have Distinct Dynamic Properties
    Laura A. Jones, Peter E. Sudbery
  • Articles
    Identification of GIG1, a GlcNAc-Induced Gene in Candida albicans Needed for Normal Sensitivity to the Chitin Synthase Inhibitor Nikkomycin Z
    Angelo Gunasekera, Francisco J. Alvarez, Lois M. Douglas, Hong X. Wang, Adam P. Rosebrock, James B. Konopka
  • Articles
    The Transcriptional Regulator Nrg1p Controls Candida albicans Biofilm Formation and Dispersion
    Priya Uppuluri, Christopher G. Pierce, Derek P. Thomas, Sarah S. Bubeck, Stephen P. Saville, Jose L. Lopez-Ribot
  • Articles
    Candida albicans Cyclin Clb4 Carries S-Phase Cyclin Activity
    Ayala Ofir, Daniel Kornitzer
  • Articles
    Candida albicans Ume6, a Filament-Specific Transcriptional Regulator, Directs Hyphal Growth via a Pathway Involving Hgc1 Cyclin-Related Protein
    Patricia L. Carlisle, David Kadosh

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