Bauer Janine, Wendland Jürgen
Carlsberg Laboratory, Yeast Biology, Gamle Carlsberg Vej 10, DK-2500 Valby, Copenhagen, Denmark.
Eukaryot Cell. 2007 Oct;6(10):1736-44. doi: 10.1128/EC.00236-07. Epub 2007 Aug 31.
Hyphal morphogenesis in Candida albicans is regulated by multiple pathways which act by either inducing or repressing filamentation. Most notably, Tup1, Nrg1, and Rfg1 are transcriptional repressors, while Efg1, Flo8, Cph1, and Czf1 can induce filamentation. Here, we present the functional analysis of CaSFL1, which encodes the C. albicans homolog of the Saccharomyces cerevisiae SFL1 (suppressor of flocculation) gene. Deletion of CaSFL1 results in flocculation (i.e., the formation of clumps) of yeast cells, which is most pronounced in minimal medium. The flocs contained hyphae already under noninducing conditions, and filamentation could be enhanced with hypha-inducing cues at 37 degrees C. Expression of SFL1 in a heterozygous mutant under the control of the CaMET3 promoter was shown to complement these defects and allowed switching between wild-type and mutant phenotypes. Interestingly, increased expression of SFL1 using a MET3prom-SFL1 construct prior to the induction of filamentation completely blocked germ tube formation. To localize Sfl1 in vivo, we generated a SFL1-GFP fusion. Sfl1-green fluorescent protein was found in the nucleus in both yeast cells and, to a lesser extent, hyphal cells. Using reverse transcription-PCR, we find an increased expression of ALS1, ALS3, HWP1, ECE1, and also FLO8. Our results suggest that Sfl1 functions in the repression of flocculation and filamentation and thus represents a novel negative regulator of C. albicans morphogenesis.
白色念珠菌的菌丝形态发生受多种途径调控,这些途径通过诱导或抑制丝状化发挥作用。最值得注意的是,Tup1、Nrg1和Rfg1是转录抑制因子,而Efg1、Flo8、Cph1和Czf1可诱导丝状化。在此,我们对CaSFL1进行了功能分析,CaSFL1编码酿酒酵母SFL1(絮凝抑制因子)基因的白色念珠菌同源物。缺失CaSFL1会导致酵母细胞絮凝(即形成团块),这在基本培养基中最为明显。这些絮凝物在非诱导条件下就已含有菌丝,在37℃时用菌丝诱导信号可增强丝状化。在CaMET3启动子控制下,SFL1在杂合突变体中的表达可弥补这些缺陷,并允许在野生型和突变体表型之间切换。有趣的是,在诱导丝状化之前,使用MET3prom-SFL1构建体增加SFL1的表达会完全阻断芽管形成。为了在体内定位Sfl1,我们构建了SFL1-GFP融合体。在酵母细胞以及较少程度的菌丝细胞中,均在细胞核中发现了Sfl1-绿色荧光蛋白。通过逆转录-聚合酶链反应,我们发现ALS1、ALS3、HWP1、ECE1以及FLO8的表达增加。我们的结果表明,Sfl1在抑制絮凝和丝状化中发挥作用,因此代表了白色念珠菌形态发生的一种新型负调控因子。