Valinluck Michael, Woraratanadharm Tad, Lu Ching-yu, Quintanilla Rene H, Banuett Flora
Department of Biological Sciences, California State University Long Beach, 1250 Bellflower Boulevard, Long Beach, CA 90840, United States.
Department of Biological Sciences, California State University Long Beach, 1250 Bellflower Boulevard, Long Beach, CA 90840, United States.
Fungal Genet Biol. 2014 May;66:54-68. doi: 10.1016/j.fgb.2014.02.010. Epub 2014 Mar 5.
Positional cues localized to distinct cell domains are critical for the generation of cell polarity and cell morphogenesis. These cues lead to assembly of protein complexes that organize the cytoskeleton resulting in delivery of vesicles to sites of polarized growth. Tea4, an SH3 domain protein, was first identified in fission yeast, and is a critical determinant of the axis of polarized growth, a role conserved among ascomycete fungi. Ustilago maydis is a badiomycete fungus that exhibits a yeast-like form that is nonpathogenic and a filamentous form that is pathogenic on maize and teozintle. We are interested in understanding how positional cues contribute to generation and maintenance of these two forms, and their role in pathogenicity. We identified a homologue of fission yeast tea4 in a genetic screen for mutants with altered colony and cell morphology and present here analysis of Tea4 for the first time in a basidiomycete fungus. We demonstrate that Tea4 is an important positional marker for polarized growth and septum location in both forms. We uncover roles for Tea4 in maintenance of cell and neck width, cell separation, and cell wall deposition in the yeast-like form, and in growth rate, formation of retraction septa, growth reversal, and inhibition of budding in the filamentous form. We show that Tea4::GFP localizes to sites of polarized or potential polarized growth in both forms, as observed in ascomycete fungi. We demonstrate an essential role of Tea4 in pathogencity in the absence of cell fusion. Basidiomycete and ascomycete Tea4 homologues share SH3 and Glc7 domains. Tea4 in basidiomycetes has additional domains, which has led us to hypothesize that Tea4 has novel functions in this group of fungi.
定位于不同细胞结构域的位置线索对于细胞极性的产生和细胞形态发生至关重要。这些线索导致蛋白质复合物的组装,从而组织细胞骨架,将囊泡输送到极化生长的部位。Tea4是一种含有SH3结构域的蛋白质,最初在裂殖酵母中被鉴定出来,是极化生长轴的关键决定因素,这一作用在子囊菌中保守。玉米黑粉菌是一种担子菌,它呈现出非致病性的酵母样形态和对玉米和大刍草致病的丝状形态。我们感兴趣的是了解位置线索如何促成这两种形态的产生和维持,以及它们在致病性中的作用。我们在一个针对菌落和细胞形态改变的突变体的遗传筛选中鉴定出裂殖酵母tea4的一个同源物,并在此首次展示担子菌中Tea4的分析。我们证明Tea4是两种形态中极化生长和隔膜位置的重要位置标记。我们发现Tea4在酵母样形态中对维持细胞和颈部宽度、细胞分离及细胞壁沉积起作用,在丝状形态中对生长速率、收缩隔膜形成、生长逆转及出芽抑制起作用。我们表明,如在子囊菌中观察到的那样,Tea4::GFP定位于两种形态中极化或潜在极化生长的部位。我们证明在没有细胞融合的情况下,Tea4在致病性中起重要作用。担子菌和子囊菌的Tea4同源物共享SH3和Glc7结构域。担子菌中的Tea4还有其他结构域,这使我们推测Tea4在这组真菌中具有新功能。