Vinces Marcelo D, Kumamoto Carol A
Department of Molecular Biology and Microbiology, Tufts University, 136 Harrison Ave., Boston, MA 02111, USA.
Microbiology (Reading). 2007 Sep;153(Pt 9):2877-2884. doi: 10.1099/mic.0.2007/005983-0.
Czf1p has been demonstrated to regulate the switch between the yeast-cell morphology and filamentous morphologies of the human fungal pathogen Candida albicans. The predicted amino acid sequence of Czf1p contains a zinc-cluster motif similar to the DNA-binding domains of proteins such as Saccharomyces cerevisiae Gal4p, suggesting that Czf1p is a DNA-binding protein. Czf1p also demonstrates genetic interaction and a two-hybrid interaction with a second regulator of C. albicans cellular morphology, Efg1p. During growth in contact with an agar matrix, Efg1p has a negative effect on filamentation and Czf1p antagonizes this effect. In addition to regulating cellular morphology, Efg1p plays a role in regulating the cell-type switch between the commonly observed white phase of C. albicans and the opaque, mating-competent phase. While overexpression of EFG1 stimulates the switch from opaque to white, the results reported here demonstrate that overexpression of CZF1 promotes the reverse switch, from white to opaque. We also demonstrate that Czf1p binds CZF1 promoter DNA in vitro. Therefore, for the regulation of both contact-dependent filamentation and white-opaque switching, Czf1p and Efg1p have opposing functions.
已证明Czf1p可调节人类真菌病原体白色念珠菌从酵母细胞形态到丝状形态的转变。Czf1p的预测氨基酸序列包含一个锌簇基序,类似于酿酒酵母Gal4p等蛋白质的DNA结合结构域,这表明Czf1p是一种DNA结合蛋白。Czf1p还显示出与白色念珠菌细胞形态的另一种调节因子Efg1p存在遗传相互作用和双杂交相互作用。在与琼脂基质接触生长期间,Efg1p对菌丝形成有负面影响,而Czf1p可拮抗这种作用。除了调节细胞形态外,Efg1p在调节白色念珠菌常见的白色相和不透明的、具有交配能力的相之间的细胞类型转变中也发挥作用。虽然EFG1的过表达会刺激从不透明到白色的转变,但此处报道的结果表明,CZF1的过表达会促进相反的转变,即从白色到不透明。我们还证明Czf1p在体外可结合CZF1启动子DNA。因此,对于接触依赖性菌丝形成和白色-不透明转变的调节,Czf1p和Efg1p具有相反的功能。