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首页> 外文期刊>Molecular Microbiology >Sphingolipid signalling mediates mitochondrial dysfunctions and reduced chronological lifespan in the yeast model of Niemann-Pick type C1
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Sphingolipid signalling mediates mitochondrial dysfunctions and reduced chronological lifespan in the yeast model of Niemann-Pick type C1

机译:鞘脂信号转导线粒体功能障碍,并降低了尼曼-匹克C1型酵母模型中的时间寿命

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The Niemann-Pick type C is a rare metabolic disease with a severe neurodegenerative phenotype characterized by an accumulation of high amounts of lipids (cholesterol and sphingolipids) in the late endosomal/lysosomal network. It is caused by loss-of-function point mutations in either NPC1 or NPC2, which seem to mediate proper intracellular lipid transport through endocytic pathway. In this study, we show that yeast cells lacking Ncr1p, an orthologue of mammalian NPC1, exhibited a higher sensitivity to hydrogen peroxide and a shortened chronological lifespan. These phenotypes were associated with increased levels of oxidative stress markers, decreased levels of antioxidant defences and mitochondrial dysfunctions. Moreover, we report that Ncr1p-deficient cells displayed high levels of long chain bases (LCB), and that Sch9p-phospho-T570 and Sch9p levels increased in ncr1 Delta cells through a mechanism regulated by Pkh1p, a LCB-activated protein kinase. Notably, deletion of PKH1 or SCH9 suppressed ncr1 Delta phenotypes but downregulation of de novo sphingolipid biosynthesis had no protective effect, suggesting that LCBs accumulation may result from an increased turnover of complex sphingolipids. These results suggest that sphingolipid signalling through Pkh1p-Sch9p mediate mitochondrial dysfunction, oxidative stress sensitivity and shortened chronological lifespan in the yeast model of Niemann-Pick type C disease.
机译:Niemann-Pick C型是一种罕见的代谢疾病,具有严重的神经退行性表型,其特征是在晚期内体/溶酶体网络中积累了大量的脂质(胆固醇和鞘脂)。它是由NPC1或NPC2中的功能丧失点突变引起的,这些突变似乎通过内吞途径介导了适当的细胞内脂质转运。在这项研究中,我们表明缺乏Ncr1p,哺乳动物NPC1的直系同源物,酵母细胞表现出对过氧化氢的更高的敏感性和缩短的时间寿命。这些表型与氧化应激标志物水平升高,抗氧化剂防御水平降低和线粒体功能障碍有关。此外,我们报告说,Ncr1p缺陷型细胞表现出高水平的长链碱基(LCB),而ncr1 Delta细胞中的Sch9p-phospho-T570和Sch9p水平通过受LCB激活的蛋白激酶Pkh1p调控的机制增加。值得注意的是,PKH1或SCH9的缺失抑制了ncr1 Delta表型,但是从头鞘脂生物合成的下调没有保护作用,这表明LCB的积累可能是由于复杂鞘脂的周转增加所致。这些结果表明,在Niemann-Pick C型疾病的酵母模型中,通过Pkh1p-Sch9p的鞘脂信号传导介导线粒体功能障碍,氧化应激敏感性和按时间顺序缩短的寿命。

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