Mating‐type locus homozygosis, phenotypic switching and mating: a unique sequence of dependencies in Candida albicans
- 19 December 2003
- Vol. 26 (1) , 10-20
- https://doi.org/10.1002/bies.10379
Abstract
A small proportion of clinical strains of Candida albicans undergo white–opaque switching. Until recently it was not clear why, since most strains carry the genes differentially expressed in the unique opaque phase. The answer to this enigma lies in the mating process. The majority of C. albicans strains are heterozygous for the mating type locus MTL (a/α) and cannot undergo white–opaque switching. However, when these cells undergo homozygosis at the mating type locus (i.e., become a/a or α/α), they can switch, and they must switch in order to mate. Even though the newly identified stages of mating mimic those of Saccharomyces cerevisiae, the process differs in its dependency on switching, and the effects switching has on gene regulation. This unique feature of C. albicans mating appears to be intimately intertwined with its pathogenesis. The unique, newly discovered dependencies of switching on homozygosis at the MTL locus and of mating on switching are, therefore, reviewed within the context of pathogenesis. BioEssays 26:10–20, 2004.Keywords
This publication has 76 references indexed in Scilit:
- The Adhesin Hwp1 and the First Daughter Cell Localize to the a/a Portion of the Conjugation Bridge duringCandida albicansMatingMolecular Biology of the Cell, 2003
- α-Pheromone-Induced “Shmooing” and Gene Regulation Require White-Opaque Switching during Candida albicans MatingEukaryotic Cell, 2003
- Cell Biology of Mating inCandida albicansEukaryotic Cell, 2003
- Ca3 Fingerprinting of Candida albicans Bloodstream Isolates from the United States, Canada, South America, and Europe Reveals a European CladeJournal of Clinical Microbiology, 2002
- MATING-TYPE GENE SWITCHING IN SACCHAROMYCES CEREVISIAEAnnual Review of Genetics, 1998
- The two-component hybrid kinase regulator CaNIKl of Candida albicansMicrobiology, 1998
- The yeast RME1 gene encodes a putative zinc finger protein that is directly repressed by a1-alpha 2.Genes & Development, 1991
- Conjugation in Saccharomyces cerevisiaeAnnual Review of Cell Biology, 1988
- GPA1, a haploid-specific essential gene, encodes a yeast homolog of mammalian G protein which may be involved in mating factor signal transductionCell, 1987
- Identification and comparison of two sequence elements that confer cell-type specific transcription in yeastNature, 1985