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Ferredoxin 1b (Fdx1b) Is the Essential Mitochondrial Redox Partner for Cortisol Biosynthesis in Zebrafish

机译:铁氧还蛋白1b(Fdx1b)是斑马鱼中皮质醇生物合成的必需线粒体氧化还原伙伴。

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摘要

Mitochondrial cytochrome P450 (CYP) enzymes rely on electron transfer from the redox partner ferredoxin 1 (FDX1) for catalytic activity. Key steps in steroidogenesis require mitochondrial CYP enzymes and FDX1. Over 30 ferredoxin mutations have been explored in vitro; however, no spontaneously occurring mutations have been identified in humans leaving the impact of FDX1 on steroidogenesis in the whole organism largely unknown. Zebrafish are an important model to study human steroidogenesis, because they have similar steroid products and endocrine tissues. This study aimed to characterize the influence of ferredoxin on steroidogenic capacity in vivo by using zebrafish. Zebrafish have duplicate ferredoxin paralogs: fdx1 and fdx1b. Although fdx1 was observed throughout development and in most tissues, fdx1b was expressed after development of the zebrafish interrenal gland (counterpart to the mammalian adrenal gland). Additionally, fdx1b was restricted to adult steroidogenic tissues, such as the interrenal, gonads, and brain, suggesting that fdx1b was interacting with steroidogenic CYP enzymes. By using transcription activator-like effector nucleases, we generated fdx1b mutant zebrafish lines. Larvae with genetic disruption of fdx1b were morphologically inconspicuous. However, steroid hormone analysis by liquid chromatography tandem mass spectrometry revealed fdx1b mutants failed to synthesize glucocorticoids. Additionally, these mutants had an up-regulation of the hypothalamus-pituitary-interrenal axis and showed altered dark-light adaptation, suggesting impaired cortisol signaling. Antisense morpholino knockdown confirmed Fdx1b is required for de novo cortisol biosynthesis. In summary, by using zebrafish, we generated a ferredoxin knockout model system, which demonstrates for the first time the impact of mitochondrial redox regulation on glucocorticoid biosynthesis in vivo.
机译:线粒体细胞色素P450(CYP)酶依靠氧化还原伴侣铁氧还蛋白1(FDX1)的电子转移来实现催化活性。类固醇生成的关键步骤需要线粒体CYP酶和FDX1。体外已经研究了30多种铁氧还蛋白突变。然而,在人类中没有发现自发发生的突变,这使得FDX1对整个生物体内类固醇生成的影响尚不清楚。斑马鱼是研究人类类固醇生成的重要模型,因为它们具有相似的类固醇产物和内分泌组织。这项研究旨在通过使用斑马鱼来表征铁氧还蛋白对体内类固醇生成能力的影响。斑马鱼有重复的铁氧还蛋白类似物:fdx1和fdx1b。尽管在整个发育过程中和大多数组织中都观察到了fdx1,但在斑马鱼肾间腺(与哺乳动物的肾上腺相对)发育后表达了fdx1b。此外,fdx1b限于成年类固醇生成组织,例如肾间,性腺和大脑,这表明fdx1b与类固醇生成CYP酶相互作用。通过使用转录激活因子样效应子核酸酶,我们生成了fdx1b突变斑马鱼品系。具有fdx1b基因破坏的幼虫在形态上不明显。然而,通过液相色谱串联质谱分析类固醇激素显示fdx1b突变体无法合成糖皮质激素。此外,这些突变体具有下丘脑-垂体-肾间轴的上调并且显示改变的暗光适应性,表明皮质醇信号传导受损。反义吗啉代敲低证实Fdx1b是从头合成皮质醇的生物合成所必需的。总之,通过使用斑马鱼,我们生成了一个铁氧还蛋白敲除模型系统,该系统首次证明了线粒体氧化还原调节对体内糖皮质激素生物合成的影响。

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