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A Drosophila mutant of LETM1, a candidate gene for seizures in Wolf-Hirschhorn syndrome

机译:LETM1的果蝇突变体,狼-希尔希霍恩综合征的癫痫发作候选基因

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摘要

Human Wolf-Hirschhorn syndrome (WHS) is a multigenic disorder resulting from a hemizygous deletion on chromosome 4. LETM1 is the best candidate gene for seizures, the strongest haploinsufficiency phenotype of WHS patients. Here, we identify the Drosophila gene CG4589 as the ortholog of LETM1 and name the gene DmLETM1. Using RNA interference approaches in both Drosophila melanogaster cultured cells and the adult fly, we have assayed the effects of down-regulating the LETM1 gene on mitochondrial function. We also show that DmLETM1 complements growth and mitochondrial K+/H+ exchange (KHE) activity in yeast deficient for LETM1. Genetic studies allowing the conditional inactivation of LETM1 function in specific tissues demonstrate that the depletion of DmLETM1 results in roughening of the adult eye, mitochondrial swelling and developmental lethality in third-instar larvae, possibly the result of deregulated mitophagy. Neuronal specific down-regulation of DmLETM1 results in impairment of locomotor behavior in the fly and reduced synaptic neurotransmitter release. Taken together our results demonstrate the function of DmLETM1 as a mitochondrial osmoregulator through its KHE activity and uncover a pathophysiological WHS phenotype in the model organism D. melanogaster.
机译:人狼-希尔斯霍恩综合征(WHS)是由4号染色体上的半合子缺失引起的多基因疾病。LETM1是癫痫发作的最佳候选基因,是WHS患者最强的单倍功能不足表型。在这里,我们将果蝇基因CG4589识别为LETM1的直系同源基因,并将其命名为DmLETM1。在果蝇培养的细胞和成年果蝇中都使用RNA干扰方法,我们已经分析了下调LETM1基因对线粒体功能的影响。我们还显示,在缺乏LETM1的酵母中,DmLETM1补充了生长和线粒体K + / H + 交换(KHE)活性。允许特定组织中LETM1功能有条件失活的遗传研究表明,DmLETM1的耗竭可导致成年幼眼变粗,线粒体肿胀和三龄幼虫的致死性,这可能是线粒体失调的结果。 DmLETM1的神经元特异性下调导致苍蝇的自发行为受损和突触神经递质释放减少。总之,我们的结果证明了DmLETM1通过其KHE活性作为线粒体渗透调节剂的功能,并揭示了模型生物D. melanogaster中的病理生理WHS表型。

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  • 来源
    《Human Molecular Genetics 》 |2010年第6期| p.987-1000| 共14页
  • 作者单位

    Department of Biochemistry, University of Toronto, Canada M5S 1A8,;

    Institute of Molecular Biotechnology of the Austrian Academy of Sciences, Dr Bohrgasse 3, Vienna 1030, Austria,;

    UPFNL, Department of Anatomy and Physiology, University of Padua, Italy,;

    UPFNL, Department of Anatomy and Physiology, University of Padua, Italy,;

    UPFNL, Department of Anatomy and Physiology, University of Padua, Italy,;

    Department of Biochemistry and Cell Biology and;

    Institute of Molecular Biotechnology of the Austrian Academy of Sciences, Dr Bohrgasse 3, Vienna 1030, Austria,;

    Department of Microbiology, Immunobiology and Genetics, MFPL, University of Vienna, Dr Bohrgasse 9, Vienna 1030, Austria;

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