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Polarity proteins Bem1 and Cdc24 are components of the filamentous fungal NADPH oxidase complex

机译:极性蛋白Bem1和Cdc24是丝状真菌NADPH氧化酶复合物的成分

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摘要

Regulated synthesis of reactive oxygen species (ROS) by membrane-bound fungal NADPH oxidases (Nox) plays a key role in fungal morphogenesis, growth, and development. Generation of reactive oxygen species (ROS) by the plant symbiotic fungus, Epichloë festucae, requires functional assembly of a multisubunit complex composed of NoxA, a regulatory component, NoxR, and the small GTPase RacA. However, the mechanism for assembly and activation of this complex at the plasma membrane is unknown. We found by yeast two-hybrid and coimmunoprecipitation assays that E. festucae NoxR interacts with homologs of the yeast polarity proteins, Bem1 and Cdc24, and that the Phox and Bem1 (PB1) protein domains found in these proteins are essential for these interactions. GFP fusions of BemA, Cdc24, and NoxR preferentially localized to actively growing hyphal tips and to septa. These proteins interact with each other in vivo at these same cellular sites as shown by bimolecular fluorescent complementation assays. The PB1 domain of NoxR is essential for localization to the hyphal tip. An E. festucae ΔbemA mutant was defective in hyphal morphogenesis and growth in culture and in planta. The changes in fungal growth in planta resulted in a defective symbiotic interaction phenotype. Our inability to isolate a Δcdc24 mutant suggests this gene is essential. These results demonstrate that BemA and Cdc24 play a critical role in localizing NoxR protein to sites of fungal hyphal morphogenesis and growth. Our findings identify a potential shared ancestral link between the protein machinery required for fungal polarity establishment and the Nox complex controlling cellular differentiation.
机译:膜结合真菌NADPH氧化酶(Nox)调节活性氧(ROS)的合成在真菌形态发生,生长和发育中起关键作用。植物共生真菌(Epichloëfestucae)产生活性氧(ROS)需要功能性组装由NoxA,调节成分,NoxR和小的GTPase RacA组成的多亚基复合物。但是,该复合物在质膜上的组装和活化机理尚不清楚。我们通过酵母双杂交和共免疫沉淀测定法发现,牛肝菌NoxR与酵母极性蛋白Bem1和Cdc24的同源物相互作用,并且在这些蛋白中发现的Phox和Bem1(PB1)蛋白域对于这些相互作用至关重要。 BemA,Cdc24和NoxR的GFP融合蛋白优先定位于活跃的菌丝尖端和隔垫。这些蛋白质在体内在这些相同的细胞位点彼此相互作用,如双分子荧光互补测定所示。 NoxR的PB1域对于定位到菌丝尖端至关重要。牛肝菌ΔbemA突变体在菌丝形态发生和培养以及植物中生长方面均存在缺陷。植物中真菌生长的变化导致有缺陷的共生相互作用表型。我们无法分离Δcdc24突变体,表明该基因至关重要。这些结果表明,BemA和Cdc24在将NoxR蛋白定位到真菌菌丝形态发生和生长的部位起着关键作用。我们的发现确定了真菌极性建立所需的蛋白质机制与控制细胞分化的Nox复合物之间潜在的共同祖先联系。

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