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NIP/DuoxA is essential for Drosophila embryonic development and regulates oxidative stress response

机译:NIP / DuoxA对果蝇胚胎发育至关重要,并调节氧化应激反应

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NIP/DuoxA, originally cloned as a protein capable of binding to the cell fate determinant Numb in Drosophila, was recently identified as a modulator of reactive oxygen species (ROS) production in mammalian systems. Despite biochemical and cellular studies that link NIP/DuoxA to the generation of ROS through the dual oxidase (Duox) enzyme, the in vivo function of NIP/DuoxA has not been characterized to date. Here we report a genetic and functional characterization of nip in Drosophila melanogaster. We show that nip is essential for Drosophila development as nip null mutants die at the 1st larval instar. Expression of UAS-nip, but not UAS-Duox, rescued the lethality. To understand the function of nip beyond the early larval stage, we generated GAL4 inducible UAS-RNAi transgenes. daG32-GAL4 driven, ubiquitous RNAi-mediated silencing of nip led to profound abnormality in pre-adult development, crinkled wing and markedly reduced lifespan at 29°C. Compared to wild type flies, da-GAL4 induced nip-RNAi transgenic flies exhibited significantly reduced ability to survive under oxidative stress and displayed impaired mitochondrial aconitase function. Our work provides in vivo evidence for a critical role for nip in the development and oxidative stress response in Drosophila.
机译:NIP / DuoxA最初被克隆为能够与果蝇中细胞命运决定簇Numb结合的蛋白质,最近被鉴定为哺乳动物系统中活性氧(ROS)产生的调节剂。尽管生化和细胞学研究通过双氧化酶(Duox)酶将NIP / DuoxA与ROS的产生联系起来,但迄今为止,NIP / DuoxA的体内功能尚未得到表征。在这里,我们报告果蝇果蝇的nip的遗传和功能表征。我们显示,nip是果蝇发育必不可少的,因为nip null突变体在第一龄幼虫期死亡。 UAS-nip的表达而非UAS-Duox的表达挽救了杀伤力。为了了解幼虫早期之后nip的功能,我们生成了GAL4诱导型UAS-RNAi转基因。 daG32-GAL4驱动的,无处不在的RNAi介导的咬合沉默导致成人发育前的异常异常,机翼皱褶和29°C时寿命明显减少。与野生型果蝇相比,da-GAL4诱导的nip-RNAi转基因果蝇在氧化应激下生存能力显着降低,并且线粒体乌头酸酶功能受损。我们的工作提供体内证据,证明nip在果蝇的发育和氧化应激反应中起关键作用。

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