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Loss of DDHD2, whose mutation causes spastic paraplegia, promotes reactive oxygen species generation and apoptosis

机译:DDHD2的丢失(其突变导致痉挛性截瘫)促进了活性氧的产生和凋亡

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DDHD2/KIAA0725p is a mammalian intracellular phospholipase A1 that exhibits phospholipase and lipase activities. Mutation of the DDHD2 gene causes hereditary spastic paraplegia (SPG54), an inherited neurological disorder characterized by lower limb spasticity and weakness. Although previous studies demonstrated lipid droplet accumulation in the brains of SPG54 patients and DDHD2 knockout mice, the cause of SPG54 remains elusive. Here, we show that ablation of DDHD2 in mice induces age-dependent apoptosis of motor neurons in the spinal cord. In vitro, motor neurons and embryonic fibroblasts from DDHD2 knockout mice fail to survive and are susceptible to apoptotic stimuli. Chemical and probe-based analysis revealed a substantial decrease in cardiolipin content and an increase in reactive oxygen species generation in DDHD2 knockout cells. Reactive oxygen species production in DDHD2 knockout cells was reversed by the expression of wild-type DDHD2, but not by an active-site DDHD2 mutant, DDHD2 mutants related to hereditary spastic paraplegia, or DDHD1, another member of the intracellular phospholipase A1 family whose mutation also causes spastic paraplegia (SPG28). Our results demonstrate the protective role of DDHD2 for mitochondrial integrity and provide a clue to the pathogenic mechanism of SPG54.
机译:DDHD2 / KIAA0725p是一种哺乳动物细胞内磷脂酶A1,具有磷脂酶和脂肪酶活性。 DDHD2基因的突变会导致遗传性痉挛性截瘫(SPG54),这是一种遗传性神经系统疾病,其特征是下肢痉挛和无力。尽管以前的研究表明SPG54患者和DDHD2基因敲除小鼠的大脑中脂质滴积聚,但SPG54的病因仍然难以捉摸。在这里,我们显示在小鼠中DDHD2的消融诱导脊髓中运动神经元的年龄依赖性凋亡。在体外,来自DDHD2基因敲除小鼠的运动神经元和胚胎成纤维细胞无法存活,并且容易受到凋亡刺激。化学和基于探针的分析表明,DDHD2基因敲除细胞的心磷脂含量显着降低,而活性氧的生成增加。 DDHD2敲除细胞中活性氧物质的产生被野生型DDHD2的表达所逆转,但未被活性位点DDHD2突变,与遗传性痉挛性截瘫相关的DDHD2突变或DDHD1(细胞内磷脂酶A1家族的另一个成员)所逆转还会引起痉挛性截瘫(SPG28)。我们的结果证明了DDHD2对线粒体完整性的保护作用,并为SPG54的致病机理提供了线索。

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