首页> 外文期刊>Neurobiology of disease >LRRK2 mutations cause mitochondrial DNA damage in iPSC-derived neural cells from Parkinson's disease patients: Reversal by gene correction
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LRRK2 mutations cause mitochondrial DNA damage in iPSC-derived neural cells from Parkinson's disease patients: Reversal by gene correction

机译:LRRK2突变导致帕金森氏病患者的iPSC衍生神经细胞中的线粒体DNA损伤:通过基因校正逆转

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摘要

Parkinson's disease associated mutations in leucine rich repeat kinase 2 ( LRRK2) impair mitochondrial function and increase the vulnerability of induced pluripotent stem cell (iPSC)-derived neural cells from patients to oxidative stress. Since mitochondrial DNA (mtDNA) damage can compromise mitochondrial function, we examined whether LRRK2 mutations can induce damage to the mitochondrial genome. We found greater levels of mtDNA damage in iPSC-derived neural cells from patients carrying homozygous or heterozygous LRRK2 G2019S mutations, or at-risk individuals carrying the heterozygous LRRK2 R1441C mutation, than in cells from unrelated healthy subjects who do not carry LRRK2 mutations. After zinc finger nuclease-mediated repair of the LRRK2 G2019S mutation in iPSCs, mtDNA damage was no longer detected in differentiated neuroprogenitor and neural cells. Our results unambiguously link LRRK2 mutations to mtDNA damage and validate a new cellular phenotype that can be used for examining pathogenic mechanisms and screening therapeutic strategies.
机译:富含亮氨酸的重复激酶2(LRRK2)中的帕金森氏病相关突变会损害线粒体功能,并增加患者诱导的多能干细胞(iPSC)衍生的神经细胞对氧化应激的脆弱性。由于线粒体DNA(mtDNA)的破坏会损害线粒体的功能,因此我们检查了LRRK2突变是否可以诱导线粒体基因组的破坏。我们发现,来自iPSC衍生的神经细胞中,携带纯合或杂合LRRK2 G2019S突变的患者,或带有杂合性LRRK2 R1441C突变的高危个体,与不携带LRRK2突变的健康受试者的细胞相比,其mtDNA损伤水平更高。在锌指核酸酶介导的修复iPSC中的LRRK2 G2019S突变后,在分化的神经祖细胞和神经细胞中不再检测到mtDNA损伤。我们的结果明确地将LRRK2突变与mtDNA损伤联系起来,并验证了可用于检查致病机制和筛选治疗策略的新细胞表型。

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