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Selective Elimination of Mitochondrial Mutations in the Germline by Genome Editing

机译:通过基因组编辑选择性消除种系中的线粒体突变

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摘要

Mitochondrial diseases include a group of maternally inherited genetic disorders caused by mutations in mtDNA. In most of these patients, mutated mtDNA coexists with wild-type mtDNA, a situation known as mtDNA heteroplasmy. Here, we report on a strategy toward preventing germline transmission of mitochondrial diseases by inducing mtDNA heteroplasmy shift through the selective elimination of mutated mtDNA. As a proof of concept, we took advantage of NZB/BALB heteroplasmic mice, which contain two mtDNA haplotypes, BALB and NZB, and selectively prevented their germline transmission using either mitochondria-targeted restriction endonucleases or TALENs. In addition, we successfully reduced human mutated mtDNA levels responsible for Leber's hereditary optic neuropathy (LHOND), and neurogenic muscle weakness, ataxia, and retinitis pigmentosa (NARP), in mammalian oocytes using mitochondria-targeted TALEN (mito-TALENs). Our approaches represent a potential therapeutic avenue for preventing the trans-generational transmission of human mitochondrial diseases caused by mutations in mtDNA.
机译:线粒体疾病包括一组由mtDNA突变引起的母亲遗传性遗传疾病。在大多数这些患者中,突变的mtDNA与野生型mtDNA共存,这种情况称为mtDNA异质性。在这里,我们报告了通过选择性消除突变的mtDNA来诱导mtDNA异质性转移,从而预防线粒体疾病的生殖系传播的策略。作为概念的证明,我们利用了NZB / BALB异质性小鼠的优势,该小鼠包含两种mtDNA单倍型BALB和NZB,并使用针对线粒体的限制性内切核酸酶或TALENs选择性地阻止了它们的种系传播。此外,我们使用靶向线粒体的TALEN(mito-TALENs)成功降低了哺乳动物卵母细胞中Leber遗传性视神经病变(LHOND)和神经源性肌肉无力,共济失调和色素性视网膜炎(NARP)的人类突变mtDNA水平。我们的方法代表了一种潜在的治疗途径,可防止由mtDNA突变引起的人类线粒体疾病的跨世代传播。

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