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Concurrent genome and epigenome editing by CRISPR-mediated sequence replacement

机译:CRISPR介导的序列替代的同时基因组和外延蛋白酶编辑

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BACKGROUND:Recent advances in genome editing have facilitated the direct manipulation of not only the genome, but also the epigenome. Genome editing is typically performed by introducing a single CRISPR/Cas9-mediated double-strand break (DSB), followed by non-homologous end joining (NHEJ)- or homology-directed repair-mediated repair. Epigenome editing, and in particular methylation of CpG dinucleotides, can be performed using catalytically inactive Cas9 (dCas9) fused to a methyltransferase domain. However, for investigations of the role of methylation in gene silencing, studies based on dCas9-methyltransferase have limited resolution and are potentially confounded by the effects of binding of the fusion protein. As an alternative strategy for epigenome editing, we tested CRISPR/Cas9 dual cutting of the genome in the presence of in vitro methylated exogenous DNA, with the aim of driving replacement of the DNA sequence intervening the dual cuts via NHEJ.RESULTS:In a proof of concept at the HPRT1 promoter, successful replacement events with heavily methylated alleles of a CpG island resulted in functional silencing of the HPRT1 gene. Although still limited in efficiency, our study demonstrates concurrent epigenome and genome editing in a single event.CONCLUSIONS:This study opens the door to investigations of the functional consequences of methylation patterns at single CpG dinucleotide resolution. Our results furthermore support the conclusion that promoter methylation is sufficient to functionally silence gene expression.
机译:背景:基因组编辑的最新进展促进了不仅是基因组的直接操纵,还促进了外观蛋白酶。基因组编辑通常通过引入单个CRISPR / CAS9介导的双链断裂(DSB)进行,然后进行非同源末端连接(NHEJ) - 或同源导向的修复介导的修复。表观簇编辑,特别是CpG二核苷酸的甲基化,可以使用融合到甲基转移酶结构域的催化活性CAS9(DCAS9)进行。然而,为了研究甲基化在基因沉默中的作用,基于DCAS9-甲基转移酶的研究具有有限的分辨率,并且可能通过融合蛋白结合的影响而混淆。作为表观蛋白酶编辑的替代策略,我们在体外甲基化外源DNA存在下测试了基因组的CRISPR / CAS9双切割,目的是驾驶替代通过NHEJ.Results的DNA序列的DNA序列进行替代:在证明在HPRT1启动子的概念,具有CPG岛的重型甲基化等位基因的成功替代事件导致HPRT1基因的功能沉默。虽然效率仍然有限,但我们的研究表明了单一事件中的并发表观蛋白酶和基因组编辑。结论:本研究开辟了对单个CPG二核苷酸分辨率的甲基化模式的功能后果的研究。我们的结果还支持结论,即启动子甲基化足以用作功能性沉默基因表达。

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