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Sequence-specific modification of mitochondrial DNA using a chimeric zinc finger methylase

机译:嵌合锌指甲基化酶对线粒体DNA的序列特异性修饰

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We used engineered zinc finger peptides (ZFPs) to bind selectively to predetermined sequences in human mtDNA. Surprisingly, we found that engineered ZFPs cannot be reliably routed to mitochondria by using only conventional mitochondrial targeting sequences. We here show that addition of a nuclear export signal allows zinc finger chimeric enzymes to be imported into human mitochondria. The selective binding of mitochondria-specific ZFPs to mtDNA was exemplified by targeting the T8993G mutation, which causes two mitochondrial diseases, neurogenic muscle weakness, ataxia, and retinitis pigmentosa (NARP) and also maternally inherited Leigh's syndrome. To develop a system that allows the monitoring of site-specific alteration of mtDNA we combined a ZFP with the easily assayed DNA-modifying activity of hDNMT3a methylase. Expression of the mutation-specific chimeric methylase resulted in the selective methylation of cytosines adjacent to the mutation site. This is a proof of principle that it is possible to target and alter mtDNA in a sequence-specific manner by using zinc finger technology.
机译:我们使用工程化的锌指肽(ZFP)选择性结合人mtDNA中的预定序列。令人惊讶地,我们发现仅使用常规的线粒体靶向序列不能将工程化的ZFP可靠地路由至线粒体。我们在这里显示出核输出信号的添加允许锌指嵌合酶被导入人线粒体。通过靶向T8993G突变,例举了线粒体特异性ZFP与mtDNA的选择性结合,该突变导致两种线粒体疾病,即神经源性肌肉无力,共济失调和色素性视网膜炎(NARP),以及母体遗传的李氏综合征。为了开发一种系统,该系统可以监测mtDNA的位点特异性变化,我们将ZFP与hDNMT3a甲基化酶的DNA修饰活性易于检测相结合。突变特异性嵌合甲基化酶的表达导致邻近突变位点的胞嘧啶选择性甲基化。这是原理证明,可以使用锌指技术以序列特异性方式靶向和改变mtDNA。

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