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Efficient Gene Silencing by Adenine Base Editor-Mediated Start Codon Mutation

机译:腺嘌呤基础编辑器介导的起始密码子突变有效基因沉默

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摘要

Traditional CRISPR/Cas9-based gene knockouts are generated by introducing DNA double-strand breaks (DSBs), but this may cause excessive DNA damage or cell death. CRISPR-based cytosine base editors (CBEs) and adenine base editors (ABEs) can facilitate C-to-T or A-to-G exchanges, respectively, without DSBs. CBEs have been employed in a gene knockout strategy: CRISPR-STOP or i-STOP changes single nucleotides to induce in-frame stop codons. However, this strategy is not applicable for some genes, and the unwanted mutations in CBE systems have recently been reported to be surprisingly significant. As a variant, the ABE systems mediate precise editing and have only rare unwanted mutations. In this study, we implemented a new strategy to induce gene silencing (i-Silence) with an ABE-mediated start codon mutation from ATG to GTG or ACG. Using both in vitro and in vivo model systems, we showed that the i-Silence approach is efficient and precise for producing a gene knockout. In addition, the i-Silence strategy can be employed to analyze ~17,804 human genes and can be used to mimic 147 kinds of pathogenic diseases caused by start codon mutations. Altogether, compared to other methods, the ABE-based i-Silence method is a safer gene knockout strategy, and it has promising application potential.
机译:通过引入DNA双链断裂(DSB)来产生传统的CRISPR / CAS9基因敲除,但这可能导致过量的DNA损伤或细胞死亡。基于CRISPR的胞嘧啶基础编辑器(CBES)和腺嘌呤基础编辑器(ABES)可以分别促进C-TO-T或A-TO-G的交换,没有DSB。 CBE已在基因敲除策略中使用:Crispr-stop或i-stop改变单核苷酸以诱导框架内止芯子。然而,这种策略不适用于一些基因,最近据报道,CBE系统中的不需要的突变令人惊讶地显着。作为变型,ABE系统介导精确编辑,并且只有罕见的不需要的突变。在这项研究中,我们实施了一种诱导基因沉默(I沉默)与APE介导的起始密码子突变从ATG到GTG或ACG的新策略。在体外和体内模型系统中使用,我们表明I沉默方法是有效且精确地生产基因敲除。另外,在i沉默策略可用于分析〜17804个人类基因和可用于模拟147种致病性疾病引起的起始密码子的突变。总共相比,与其他方法相比,基于ABE的I沉默方法是一种更安全的基因淘汰赛策略,并且具有前景的应用潜力。

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