Münchow Sonja, Ferring Dunja, Kahlina Kornelija, Jansen Ralf-Peter
ZMBH, Universität Heidelberg, Im Neuenheimer Feld 282, 69120 Heidelberg, Germany.
Curr Genet. 2002 May;41(2):73-81. doi: 10.1007/s00294-002-0286-y. Epub 2002 Apr 27.
Several fungi can undergo a dimorphic switch from yeast-like to hyphal or pseudohyphal forms in response to environmental cues. The Saccharomyces cerevisae GATA-type transcription factor Ash1p is required for diploid pseudohyphal differentiation during nitrogen starvation. In haploid cells, Ash1p is essential for the cell-type specific repression of the HO gene. We cloned CaAsh1, a putative homologue of Ash1p from the pathogen Candida albicans. Although the overall similarity of CaAsh1p and Ash1p is modest, both proteins show significant homology in their carboxy termini. Upon expression in budding yeast, CaASH1 mRNA is asymmetrically sorted during cell division, which is similar to the fate of ASH1 mRNA. Cell-specific CaASH1 mRNA localization results in an asymmetric CaAsh1 protein distribution and an accumulation of the protein in daughter cell nuclei. CaAsh1 is unable to repress HO expression in S. cerevisiae but can replace ScAsh1 function during pseudohyphal growth. This suggests a partial functional similarity of the two Ash1 proteins.
几种真菌能够根据环境线索经历从酵母样形态到菌丝或假菌丝形态的二态性转变。酿酒酵母的GATA型转录因子Ash1p是氮饥饿期间二倍体假菌丝分化所必需的。在单倍体细胞中,Ash1p对于HO基因的细胞类型特异性抑制至关重要。我们从病原体白色念珠菌中克隆了CaAsh1,它是Ash1p的一个假定同源物。尽管CaAsh1p和Ash1p的整体相似性一般,但这两种蛋白质在其羧基末端显示出显著的同源性。在芽殖酵母中表达时,CaASH1 mRNA在细胞分裂期间不对称分选,这与ASH1 mRNA的命运相似。细胞特异性CaASH1 mRNA定位导致CaAsh1蛋白分布不对称,并使该蛋白在子细胞核中积累。CaAsh1无法在酿酒酵母中抑制HO表达,但在假菌丝生长过程中可以替代ScAsh1的功能。这表明两种Ash1蛋白存在部分功能相似性。