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Curly Encodes Dual Oxidase Which Acts with Heme Peroxidase Curly Su to Shape the Adult Drosophila Wing

机译:卷曲编码双重氧化酶与血红素过氧化物酶卷曲苏一起作用以塑造成年果蝇的翅膀

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摘要

Curly, described almost a century ago, is one of the most frequently used markers in Drosophila genetics. Despite this the molecular identity of Curly has remained obscure. Here we show that Curly mutations arise in the gene dual oxidase (duox), which encodes a reactive oxygen species (ROS) generating NADPH oxidase. Using Curly mutations and RNA interference (RNAi), we demonstrate that Duox autonomously stabilizes the wing on the last day of pupal development. Through genetic suppression studies, we identify a novel heme peroxidase, Curly Su (Cysu) that acts with Duox to form the wing. Ultrastructural analysis suggests that Duox and Cysu are required in the wing to bond and adhere the dorsal and ventral cuticle surfaces during its maturation. In Drosophila, Duox is best known for its role in the killing of pathogens by generating bactericidal ROS. Our work adds to a growing number of studies suggesting that Duox’s primary function is more structural, helping to form extracellular and cuticle structures in conjunction with peroxidases.
机译:大约一个世纪前描述的卷曲是果蝇遗传学中最常用的标记之一。尽管如此,Curly的分子身份仍然不清楚。在这里,我们显示在基因双重氧化酶(duox)中出现卷曲突变,该基因编码生成NADPH氧化酶的活性氧(ROS)。使用卷曲突变和RNA干扰(RNAi),我们证明Duox在on发育的最后一天自主稳定机翼。通过基因抑制研究,我们确定了一种新型的血红素过氧化物酶Curly Su(Cysu),它与Duox共同作用以形成翅膀。超微结构分析表明,机翼中需要Duox和Cysu在成熟过程中粘合和粘附背侧和腹侧表皮表面。在果蝇中,Duox以其通过产生杀菌性ROS杀死病原体的作用而闻名。我们的工作增加了越来越多的研究,表明Duox的主要功能更具结构性,有助于与过氧化物酶一起形成细胞外和表皮结构。

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