Candida albicans Rho-type GTPase-encoding genes required for polarized cell growth and cell separation

Alexander Dünkler1, Jürgen Wendland

  • 1Department of Microbiology, Friedrich Schiller University, Jena, Germany.

Eukaryotic Cell
|March 14, 2007
PubMed

Insights

Investigating Candida albicans Rho proteins, CaRHO3 and CaCRL1/CaRHO4, revealed CaRHO3 is crucial for cell polarity and hyphal growth, while CaCRL1/CaRHO4 regulates cell separation and morphology.

Area of Science:

  • * Cell Biology
  • * Mycology
  • * Molecular Genetics

Background:

  • * Rho proteins are critical regulators of cell morphogenesis in eukaryotes.
  • * The roles of two uncharacterized Rho proteins in *Candida albicans*, CaRHO3 and CaCRL1/CaRHO4, were investigated.
  • * *Candida albicans* is an important human fungal pathogen with complex developmental pathways.

Purpose of the Study:

  • * To elucidate the functions of the *Candida albicans* Rho proteins CaRHO3 and CaCRL1/CaRHO4.
  • * To understand their roles in cell polarity, morphogenesis, and cytokinesis.
  • * To propose a model for Rho4p function in *C. albicans*.

Main Methods:

  • * Gene deletion and promoter shutdown experiments were employed to study Rho3 and Rho4 function.
  • * Phenotypic analysis included assessment of cell polarity, actin cytoskeleton organization, hyphal growth, and cell separation.
  • * Localization studies using protein tagging and microscopy were performed.

Main Results:

  • * CaRHO3 is essential for cell polarity and hyphal growth; its absence leads to depolarized actin and abolished hyphal formation.
  • * CaCRL1/CaRHO4 is nonessential but crucial for cell separation, causing elongated cells and chains; it also influences colony morphology.
  • * Rho4p localizes to septal sites and shares phenotypic similarities with Bnr1, suggesting a role in septum formation.

Conclusions:

  • * CaRHO3 plays a vital role in maintaining cell polarity and directing hyphal development in *C. albicans*.
  • * CaCRL1/CaRHO4 is implicated in regulating cell separation and potentially breaking the initial polarity axis to facilitate septum formation.
  • * Rho4p may function in conjunction with other proteins like Bnr1 to control cell division and morphology in *C. albicans*.

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