Khalaf R A, Zitomer R S
Department of Biological Sciences, University at Albany/State University of New York, Albany, New York 12222, USA.
Genetics. 2001 Apr;157(4):1503-12. doi: 10.1093/genetics/157.4.1503.
We have identified a repressor of hyphal growth in the pathogenic yeast Candida albicans. The gene was originally cloned in an attempt to characterize the homologue of the Saccharomyces cerevisiae Rox1, a repressor of hypoxic genes. Rox1 is an HMG-domain, DNA binding protein with a repression domain that recruits the Tup1/Ssn6 general repression complex to achieve repression. The C. albicans clone also encoded an HMG protein that was capable of repression of a hypoxic gene in a S. cerevisiae rox1 deletion strain. Gel retardation experiments using the purified HMG domain of this protein demonstrated that it was capable of binding specifically to a S. cerevisiae hypoxic operator DNA sequence. These data seemed to indicate that this gene encoded a hypoxic repressor. However, surprisingly, when a homozygous deletion was generated in C. albicans, the cells became constitutive for hyphal growth. This phenotype was rescued by the reintroduction of the wild-type gene on a plasmid, proving that the hyphal growth phenotype was due to the deletion and not a secondary mutation. Furthermore, oxygen repression of the hypoxic HEM13 gene was not affected by the deletion nor was this putative ROX1 gene regulated positively by oxygen as is the case for the S. cerevisiae gene. All these data indicate that this gene, now designated RFG1 for Repressor of Filamentous Growth, is a repressor of genes required for hyphal growth and not a hypoxic repressor.
我们已经在致病性酵母白色念珠菌中鉴定出一种菌丝生长的阻遏物。该基因最初是在试图鉴定酿酒酵母Rox1(一种低氧基因的阻遏物)的同源物时克隆得到的。Rox1是一种具有HMG结构域的DNA结合蛋白,带有一个阻遏结构域,该结构域招募Tup1/Ssn6通用阻遏复合物以实现阻遏作用。白色念珠菌的克隆也编码一种HMG蛋白,该蛋白能够在酿酒酵母rox1缺失菌株中阻遏一个低氧基因。使用该蛋白纯化的HMG结构域进行的凝胶阻滞实验表明,它能够特异性结合酿酒酵母低氧操纵子DNA序列。这些数据似乎表明该基因编码一种低氧阻遏物。然而,令人惊讶的是,当在白色念珠菌中产生纯合缺失时,细胞变成了菌丝生长的组成型。通过在质粒上重新引入野生型基因挽救了这种表型,证明菌丝生长表型是由于缺失而不是二次突变。此外,低氧HEM13基因的氧阻遏不受该缺失的影响,并且这个假定的ROX1基因也不像酿酒酵母基因那样受氧正向调控。所有这些数据表明,这个现在被命名为RFG1(丝状生长阻遏物)的基因是菌丝生长所需基因的阻遏物,而不是低氧阻遏物。