Chew Emily, Aweiss Yara, Lu Ching-Yu, Banuett Flora
Department of Chemistry and Biochemistry, California State University, 1250 Bellflower Boulevard, Long Beach, California 90840, USA.
Mycologia. 2008 Jan-Feb;100(1):31-46. doi: 10.3852/mycologia.100.1.31.
Abstract: Ustilago maydis is a Basidiomycete fungus that exhibits a yeast-like nonpathogenic form and a dikaryotic filamentous pathogenic form. Generation of these two forms is controlled by two mating type loci, a and b. The fungus undergoes additional morphological transitions in the plant that result in formation of a third cell type, the teliospore. The fuz1 gene is necessary for this developmental program. Here we report cloning and sequencing of fuz1 and show that it contains an open reading frame with coding capacity for a protein of 1421 amino acids. The Fuz1 protein belongs to the family of MYND Zn finger domain proteins. We generate a null mutation in strains of opposite mating type and show that fuz1 is necessary for conjugation tube formation, a morphological transition that occurs in response to pheromones. We generate fuz1- diploid strains heterozygous at a and b and show that fuz1 is also necessary for postfusion events (maintenance of filamentous growth). We also demonstrate that fuz1 is necessary for cell morphogenesis of the yeast-like cell: normal cell length, location and number of septa, cell separation and constriction of the neck region. Fuz1 is also required for cell wall integrity and to prevent secretion of a dark pigment. We propose that the MYND domain may interact with different proteins to regulate cell morphogenesis.
玉蜀黍黑粉菌是一种担子菌纲真菌,具有酵母样非致病形态和双核丝状致病形态。这两种形态的产生由两个交配型位点a和b控制。该真菌在植物体内还会经历其他形态转变,从而形成第三种细胞类型——冬孢子。fuz1基因对于这一发育程序是必需的。在此,我们报告了fuz1的克隆和测序,并表明它包含一个开放阅读框,编码一个由1421个氨基酸组成的蛋白质。Fuz1蛋白属于MYND锌指结构域蛋白家族。我们在相反交配型的菌株中产生了一个无效突变,并表明fuz1对于接合管的形成是必需的,接合管形成是一种响应信息素而发生的形态转变。我们构建了在a和b位点杂合的fuz1 - 二倍体菌株,并表明fuz1对于融合后事件(维持丝状生长)也是必需的。我们还证明fuz1对于酵母样细胞的细胞形态发生是必需的:正常的细胞长度、隔膜的位置和数量、细胞分离以及颈部区域的收缩。Fuz1对于细胞壁完整性以及防止深色色素的分泌也是必需的。我们提出MYND结构域可能与不同蛋白质相互作用以调节细胞形态发生。