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Published on: November 8, 2006
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.
Abstract:
Rho proteins are essential regulators of morphogenesis in eukaryotic cells. In this report, we investigate the role of two previously uncharacterized Rho proteins, encoded by the Candida albicans RHO3 (CaRHO3) and CaCRL1/CaRHO4 genes. The CaRHO3 gene was found to contain one intron. Promoter shutdown experiments using a MET3 promoter-controlled RHO3 revealed a strong cell polarity defect and a partially depolarized actin cytoskeleton. Hyphal growth after promoter shutdown was abolished in rho3 mutants even in the presence of a constitutively active ras1(G13V) allele, and existing germ tubes became swollen. Deletion of C. albicans RHO4 indicated that it is a nonessential gene and that rho4 mutants were phenotypically different from rho3. Two distinct phenotypes of rho4 cells were elongated cell morphology and an unexpected cell separation defect generating chains of cells. Colony morphology of crl1/rho4 resulted in a growth-dependent smooth (long cell cycle length) or wrinkled (short cell cycle length) phenotype. This phenotype was additionally dependent on the rho4 cell separation defect and was also found in a Cacht3 chitinase mutant that shows a strong cytokinesis defect. The overexpression of the endoglucanase encoding the ENG1 gene, but not CHT3, suppressed the cell separation defect of crl1/rho4 but could not suppress the cell elongation phenotype. C. albicans Crl1/Rho4 and Bnr1 both localize to septal sites in yeast and hyphal cells but not to the hyphal tip. Deletion of RHO4 and BNR1 produced similar morphological phenotypes. Based on the localization of Rho4 and on the rho4 mutant phenotype, we propose a model in which Rho4p may function as a regulator of cell polarity, breaking the initial axis of polarity found during early bud growth to promote the construction of a septum.
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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