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首页> 外文期刊>Eukaryotic cell >NADPH Oxidases NOX-1 and NOX-2 Require the Regulatory Subunit NOR-1 To Control Cell Differentiation and Growth in Neurospora crassa
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NADPH Oxidases NOX-1 and NOX-2 Require the Regulatory Subunit NOR-1 To Control Cell Differentiation and Growth in Neurospora crassa

机译:NADPH氧化酶NOX-1和NOX-2需要调节亚基NOR-1来控制神经孢菌中的细胞分化和生长

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We have proposed that reactive oxygen species (ROS) play essential roles in cell differentiation. Enzymes belonging to the NADPH oxidase (NOX) family produce superoxide in a regulated manner. We have identified three distinct NOX subfamilies in the fungal kingdom and have shown that NoxA is required for sexual cell differentiation in Aspergillus nidulans. Here we show that Neurospora crassa NOX-1 elimination results in complete female sterility, decreased asexual development, and reduction of hyphal growth. The lack of NOX-2 did not affect any of these processes but led instead to the production of sexual spores that failed to germinate, even in the presence of exogenous oxidants. The elimination of NOR-1, an ortholog of the mammalian Nox2 regulatory subunit gp67phox, also caused female sterility, the production of unviable sexual spores, and a decrease in asexual development and hyphal growth. These results indicate that NOR-1 is required for NOX-1 and NOX-2 functions at different developmental stages and establish a link between NOX-generated ROS and the regulation of growth. Indeed, NOX-1 was required for the increased asexual sporulation previously observed in mutants without catalase CAT-3. We also analyzed the function of the penta-EF calcium-binding domain protein PEF-1 in N. crassa. Deletion of pef-1 resulted in increased conidiation but, in contrast to what occurs in Dictyostelium discoideum, the mutation of this peflin did not suppress the phenotypes caused by the lack of NOX-1. Our results support the role of ROS as critical cell differentiation signals and highlight a novel role for ROS in regulation of fungal growth.
机译:我们已经提出,活性氧(ROS)在细胞分化中起重要作用。属于NADPH氧化酶(NOX)家族的酶以调节的方式产生超氧化物。我们在真菌王国中鉴定出三个不同的NOX亚家族,并表明NoxA是构巢曲霉(empergillus nidulans)中性细胞分化所必需的。在这里,我们显示 Neurospora crassa NOX-1的消除导致女性完全不育,无性发育减少和菌丝生长减少。缺乏NOX-2不会影响任何这些过程,而是导致即使在存在外源氧化剂的情况下也无法发芽的有性孢子的产生。消除NOR-1是哺乳动物Nox2调节亚基gp67 phox 的直系同源物,也导致女性不育,无法存活的有性孢子的产生以及无性发育的减少和菌丝生长。这些结果表明,NOR-1是不同发育阶段的NOX-1和NOX-2功能所必需的,并在NOX生成的ROS与生长调节之间建立了联系。实际上,以前在没有过氧化氢酶CAT-3的突变体中观察到的无性孢子形成增加需要NOX-1。我们还分析了 N中五-EF钙结合结构域蛋白PEF-1的功能。 crassa 。删除 pef-1 导致分生孢子增加,但是与 Dictyostelium discoideum 中发生的情况相反,该peflin的突变并不能抑制NOX缺乏引起的表型。 -1。我们的结果支持ROS作为关键的细胞分化信号的作用,并突出了ROS在调节真菌生长中的新作用。

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