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Calcineurin Silencing in Dictyostelium discoideum Leads to Cellular Alterations Affecting Mitochondria, Gene Expression, and Oxidative Stress Response

机译:钙粉沉默在Dictyostelium discoidum中沉默导致影响线粒体,基因表达和氧化应激反应的细胞改变

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摘要

Calcineurin is involved in development and cell differentiation of the social amoeba Dictyostelium discoideum. However, since knockouts of the calcineurin-encoding genes are not possible in D. discoideum it is assumed that the phosphatase also plays a crucial role during vegetative growth of the amoebae. Therefore, we investigated the role of calcineurin during vegetative growth in D. discoideum. RNAi-silenced calcineurin mutants showed cellular alterations with an abnormal morphology of mitochondria and had increased content of mitochondrial DNA (mtDNA). In contrast, mitochondria showed no substantial functional impairment. Calcineurin-silencing led to altered expression of calcium-regulated genes as well as mitochondrially-encoded genes. Furthermore, genes related to oxidative stress were higher expressed in the mutants, which correlated to an increased resistance towards reactive oxygen species (ROS). Most of the changes observed during vegetative growth were not seen after starvation of the calcineurin mutants. We show that impairment of calcineurin led to many subtle, but in the sum crucial cellular alterations in vegetative D. discoideum cells. As these alterations were not observed after starvation we propose a dual role for calcineurin during growth and development. Our results imply that calcineurin is one player in the mutual interplay between mitochondria and ROS during vegetative growth. (C) 2018 Elsevier GmbH. All rights reserved.
机译:钙皮林参与了社会amoeba dictyostelium discoideum的开发和细胞分化。然而,由于在D的钙素编码基因的敲除,在D. Discoide中不可能假设磷酸酶在Amoebae的营养生长期间也起到至关重要的作用。因此,我们调查了钙调解素在D. discoide的营养生长期间的作用。 RNAi-沉默的钙突突变体显示细胞改变,具有线粒体的异常形态,并且具有增加的线粒体DNA含量(MTDNA)。相比之下,线粒体显示出没有实质性的功能损伤。钙突菌沉默导致钙调节基因以及线粒体编码基因的表达改变。此外,与氧化应激相关的基因在突变体中表达较高,其与对反应性氧(ROS)的增加的抗性相关。在钙蛋白酶突变体饥饿后,营养生长期间观察到的大多数变化。我们展示钙突蛋白的损伤导致了许多微妙,但在营养植物D.植物植物细胞中的含义中的关键细胞改变。由于在饥饿后未观察到这些改变,我们将在生长和发育期间提出钙皮林的双重作用。我们的结果意味着钙突素是在营养生长期间线粒体和RO之间相互相互相互相互相互相互作用的球员。 (c)2018年Elsevier GmbH。版权所有。

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  • 来源
    《Protist》 |2018年第4期|共19页
  • 作者单位

    Free Univ Berlin Inst Biol Microbiol Dept Biol Chem Pharm Konigin Luise Str 12-16 D-14195 Berlin Germany;

    Free Univ Berlin Inst Biol Microbiol Dept Biol Chem Pharm Konigin Luise Str 12-16 D-14195 Berlin Germany;

    Free Univ Berlin Inst Biol Zool Dept Biol Chem Pharm Konigin Luise Str 1-3 D-14195 Berlin Germany;

    Free Univ Berlin Inst Biol Microbiol Dept Biol Chem Pharm Konigin Luise Str 12-16 D-14195 Berlin Germany;

    Free Univ Berlin Inst Biol Microbiol Dept Biol Chem Pharm Konigin Luise Str 12-16 D-14195 Berlin Germany;

    Free Univ Berlin Inst Biol Microbiol Dept Biol Chem Pharm Konigin Luise Str 12-16 D-14195 Berlin Germany;

    German Rheumatism Res Ctr DRFZ A Leibniz Inst Charitepl 1 D-10117 Berlin Germany;

    Free Univ Berlin Inst Biol Zool Dept Biol Chem Pharm Konigin Luise Str 1-3 D-14195 Berlin Germany;

    German Rheumatism Res Ctr DRFZ A Leibniz Inst Charitepl 1 D-10117 Berlin Germany;

    Free Univ Berlin Inst Biol Microbiol Dept Biol Chem Pharm Konigin Luise Str 12-16 D-14195 Berlin Germany;

    Free Univ Berlin Inst Biol Microbiol Dept Biol Chem Pharm Konigin Luise Str 12-16 D-14195 Berlin Germany;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 原生动物门;
  • 关键词

    mtDNA; mitochondrial remodelling; calcium; oxidative stress; phototaxis;

    机译:mtdna;线粒体重塑;钙;氧化应激;光炎;

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