首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >Humans possess two mitochondrial ferredoxins, Fdx1 and Fdx2, with distinct roles in steroidogenesis, heme, and Fe/S cluster biosynthesis
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Humans possess two mitochondrial ferredoxins, Fdx1 and Fdx2, with distinct roles in steroidogenesis, heme, and Fe/S cluster biosynthesis

机译:人类拥有两种线粒体铁氧还蛋白Fdx1和Fdx2,它们在类固醇生成,血红素和Fe / S团簇生物合成中具有独特的作用

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摘要

Mammalian adrenodoxin (ferredoxin 1; Fdx1) is essential for the synthesis of various steroid hormones in adrenal glands. As a member of the [2Fe-2S] cluster-containing ferredoxin family, Fdx1 reduces mitochondrial cytochrome P450 enzymes, which then catalyze; e.g., the conversion of cholesterol to pregnenolone, aldos-terone, and cortisol. The high protein sequence similarity between Fdx1 and its yeast adrenodoxin homologue (Yah1) suggested that Fdx1, like Yah1, may be involved in the biosynthesis of heme A and Fe/S clusters, two versatile and essential protein cofactors. Our study, employing RNAi technology to deplete human Fdx1, did not confirm this expectation. Instead, we identified a Fdx1-related mitochondrial protein, designated ferredoxin 2 (Fdx2) and found it to be essential for heme A and Fe/S protein biosynthesis. Unlike Fdx1, Fdx2 was unable to efficiently reduce mitochondrial cytochromes P450 and convert steroids, indicating that the two ferredoxin isof orms are highly specific for their substrates in distinct biochemical pathways. Moreover, Fdx2 deficiency had a severe impact, via impaired Fe/S protein biogenesis, on cellular iron home-ostasis, leading to increased cellular iron uptake and iron accumulation in mitochondria. We conclude that mammals depend on two distinct mitochondrial ferredoxins for the specific production of either steroid hormones or heme A and Fe/S proteins.
机译:哺乳动物肾上腺毒素(铁氧还蛋白1; Fdx1)对于在肾上腺中合成各种类固醇激素至关重要。作为[2Fe-2S]簇含铁氧还蛋白家族的成员,Fdx1还原线粒体细胞色素P450酶,然后催化该酶。例如,胆固醇转化为孕烯醇酮,醛糖-酮和皮质醇。 Fdx1及其酵母肾上腺毒素同系物(Yah1)之间的高度蛋白质序列相似性表明,Fdx1与Yah1一样,可能参与血红素A和Fe / S簇的生物合成,这是两种通用且必不可少的蛋白质辅助因子。我们的研究采用RNAi技术消耗人类Fdx1,没有证实这一期望。相反,我们鉴定了Fdx1相关的线粒体蛋白,称为铁氧还蛋白2(Fdx2),发现它对于血红素A和Fe / S蛋白的生物合成至关重要。与Fdx1不同,Fdx2无法有效地减少线粒体细胞色素P450并转换类固醇,表明这两个铁氧还蛋白等位基因在不同的生化途径中对它们的底物具有高度特异性。此外,Fdx2缺乏症通过受损的Fe / S蛋白生物合成对细胞铁稳态产生了严重影响,导致细胞铁摄取增加和线粒体中的铁蓄积。我们得出结论,哺乳动物依赖两种不同的线粒体铁氧还蛋白来产生类固醇激素或血红素A和Fe / S蛋白。

著录项

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  • 作者单位

    Institut fuer Zytobiologie, Philipps-Universitaet Marburg, Robert-Koch-Strasse 6, 35033 Marburg, Germany;

    rnInstitut fuer Zytobiologie, Philipps-Universitaet Marburg, Robert-Koch-Strasse 6, 35033 Marburg, Germany;

    rnInstitut fuer Zytobiologie, Philipps-Universitaet Marburg, Robert-Koch-Strasse 6, 35033 Marburg, Germany;

    rnInstitut fuer Zytobiologie, Philipps-Universitaet Marburg, Robert-Koch-Strasse 6, 35033 Marburg, Germany;

    rnInstitut fuer Zytobiologie, Philipps-Universitaet Marburg, Robert-Koch-Strasse 6, 35033 Marburg, Germany;

    rnInstitut fuer Zytobiologie, Philipps-Universitaet Marburg, Robert-Koch-Strasse 6, 35033 Marburg, Germany;

    rnFR 8.3-Biologie, Institut fuer Biochemie, Universitaet des Saarlandes, Campus B2 2, 66123 Saarbruecken, Germany;

    rnFR 8.3-Biologie, Institut fuer Biochemie, Universitaet des Saarlandes, Campus B2 2, 66123 Saarbruecken, Germany;

    rnFR 8.3-Biologie, Institut fuer Biochemie, Universitaet des Saarlandes, Campus B2 2, 66123 Saarbruecken, Germany;

    rnInstitut fuer Zytobiologie, Philipps-Universitaet Marburg, Robert-Koch-Strasse 6, 35033 Marburg, Germany;

  • 收录信息 美国《科学引文索引》(SCI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    adrenodoxin; cytochrome P450; iron; iron-sulfur cluster; IRP1;

    机译:肾上腺素细胞色素P450;铁;铁硫簇IRP1;
  • 入库时间 2022-08-18 00:41:23

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