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首页> 外文期刊>Genome Biology >Stable inheritance of DNA methylation allows creation of epigenotype maps and the study of epiallele inheritance patterns in the absence of genetic variation
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Stable inheritance of DNA methylation allows creation of epigenotype maps and the study of epiallele inheritance patterns in the absence of genetic variation

机译:DNA甲基化的稳定遗传可以创建表观型图谱,并在没有遗传变异的情况下研究表位等位基因的遗传模式

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Background: Conditional knockout mice and transgenic mice expressing recombinases, reporters, and inducible transcriptional activators are key for many genetic studies and comprise over 90% of mouse models created. Conditional knockout mice are generated using labor-intensive methods of homologous recombination in embryonic stem cells and are available for only ~25% of all mouse genes. Transgenic mice generated by random genomic insertion approaches pose problems of unreliable expression, and thus there is a need for targetedinsertion models. Although CRISPR-based strategies were reported to create conditional and targeted-insertion alleles via one-step delivery of targeting components directly to zygotes, these strategies are quite inefficient. Results: Here we describe Easi-CRISPR (Efficient additions with ssDNA inserts-CRISPR), a targeting strategy in which long single-stranded DNA donors are injected with pre-assembled crRNA + tracrRNA + Cas9 ribonucleoprotein (ctRNP) complexes into mouse zygotes. We show for over a dozen loci that Easi-CRISPR generates correctly targeted conditional and insertion alleles in 8.5–100% of the resulting live offspring. Conclusions: Easi-CRISPR solves the major problem of animal genome engineering, namely the inefficiency of targeted DNA cassette insertion. The approach is robust, succeeding for all tested loci. It is versatile, generating both conditional and targeted insertion alleles. Finally, it is highly efficient, as treating an average of only 50 zygotes is sufficient to produce a correctly targeted allele in up to 100% of live offspring. Thus, Easi-CRISPR offers a comprehensive means of building large-scale Cre-LoxP animal resources.
机译:背景:表达重组酶,报道分子和诱导型转录激活因子的条件基因敲除小鼠和转基因小鼠是许多遗传学研究的关键,占所创建小鼠模型的90%以上。有条件的基因敲除小鼠是通过劳动密集型方法在胚胎干细胞中进行同源重组而产生的,仅约25%的小鼠基因可用。通过随机基因组插入方法产生的转基因小鼠引起表达不可靠的问题,因此需要靶向插入模型。尽管据报道基于CRISPR的策略是通过将靶向成分直接一步传递至受精卵而产生条件性和靶向插入等位基因的,但这些策略效率很低。结果:在这里我们描述了Easi-CRISPR(具有ssDNA inserts-CRISPR的高效添加物)的靶向策略,其中长单链DNA供体被预先组装的crRNA + tracrRNA + Cas9核糖核蛋白(ctRNP)复合物注射到小鼠受精卵中。我们为十几个基因座显示,Easi-CRISPR在所产生的活后代的8.5–100%中产生正确定向的条件等位基因和插入等位基因。结论:Easi-CRISPR解决了动物基因组工程的主要问题,即靶向DNA盒插入效率低下。该方法是鲁棒的,对于所有测试的基因座都是成功的。它用途广泛,可生成条件插入和靶向插入等位基因。最后,它是高效的,因为仅治疗50个受精卵就足以在多达100%的活后代中产生正确靶向的等位基因。因此,Easi-CRISPR提供了构建大规模Cre-LoxP动物资源的综合手段。

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