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Endocytosis Is Crucial for Cell Polarity and Apical Membrane Recycling in the Filamentous Fungus Aspergillus oryzae

机译:内吞作用对于丝状真菌米曲霉中的细胞极性和顶膜回收至关重要。

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Establishing the occurrence of endocytosis in filamentous fungi was elusive in the past mainly due to the lack of reliable indicators of endocytosis. Recently, however, it was shown that the fluorescent dye N-(3-triethylammoniumpropyl)-4-(p-diethyl-aminophenyl-hexatrienyl)pyridinium dibromide (FM4-64) and the plasma membrane protein AoUapC (Aspergillus oryzae UapC) fused to enhanced green fluorescent protein (EGFP) were internalized from the plasma membrane by endocytosis. Although the occurrence of endocytosis was clearly demonstrated, its physiological importance in filamentous fungi still remains largely unaddressed. We generated a strain in which A. oryzae end4 (Aoend4), the A. oryzae homolog of Saccharomyces cerevisiae END4/SLA2, was expressed from the Aoend4 locus under the control of a regulatable thiA promoter. The growth of this strain was severely impaired, and its hyphal morphology was altered in the Aoend4-repressed condition. Moreover, in the Aoend4-repressed condition, neither FM4-64 nor AoUapC-EGFP was internalized, indicating defective endocytosis. Furthermore, the localization of a secretory soluble N-ethylmaleimide-sensitive factor attachment protein receptor (SNARE) was abnormal in the Aoend4-repressed condition. Aberrant accumulation of cell wall components was also observed by calcofluor white staining and transmission electron microscopy analysis, and several genes that encode cell wall-building enzymes were upregulated, indicating that the regulation of cell wall synthesis is abnormal in the Aoend4-repressed condition, whereas Aopil1 disruptants do not display the phenotype exhibited in the Aoend4-repressed condition. Our results strongly suggest that endocytosis is crucial for the hyphal tip growth in filamentous fungi.
机译:过去很难确定丝状真菌是否有内吞作用,这主要是由于缺乏可靠的内吞作用指示剂。但是,最近发现荧光染料 N -(3-三乙基铵丙基)-4-( p -二乙基-氨基苯基-六三烯基)二溴化吡啶鎓(FM4-64 ),并通过胞吞作用将质膜蛋白AoUapC(米曲霉UapC)与增强型绿色荧光蛋白(EGFP)融合在一起。尽管清楚地证明了内吞作用的发生,但其在丝状真菌中的生理重要性仍未得到充分解决。我们产生了一个菌株,其中 A。 oryzae end4 (Ao end4 ),即 A。在可调节的控制下,从Ao end4 位点表达酿酒酵母END4 / SLA2 的稻米同源物。 thiA 启动子。在Ao end4 抑制的条件下,该菌株的生长受到严重损害,其菌丝形态发生改变。此外,在Ao end4 抑制的条件下,FM4-64和AoUapC-EGFP都没有被内在化,表明胞吞作用存在缺陷。此外,分泌的可溶性 N -乙基马来酰亚胺敏感因子附着蛋白受体(SNARE)的位置在Ao end4 抑制条件下是异常的。通过钙荧光白染色和透射电镜分析还观察到细胞壁成分的异常积累,并且编码细胞壁构建酶的几个基因被上调,表明在Ao end4 < / em>抑制条件,而Ao pil1 破坏基因则不显示在Ao end4 抑制条件下表现出的表型。我们的结果强烈表明,内吞作用对于丝状真菌的菌丝尖端生长至关重要。

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