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CRISPR/Cas9-based generation of knockdown mice by intronic insertion of artificial microRNA using longer single-stranded DNA

机译:通过使用更长的单链DNA内源插入人工microRNA来产生基于CRISPR / Cas9的基因敲除小鼠

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Knockdown mouse models, where gene dosages can be modulated, provide valuable insights into gene function. Typically, such models are generated by embryonic stem (ES) cell-based targeted insertion, or pronuclear injection, of the knockdown expression cassette. However, these methods are associated with laborious and time-consuming steps, such as the generation of large constructs with elements needed for expression of a functional RNAi-cassette, ES-cell handling, or screening for mice with the desired knockdown effect. Here, we demonstrate that reliable knockdown models can be generated by targeted insertion of artificial microRNA (amiRNA) sequences into a specific locus in the genome [such as intronic regions of endogenous eukaryotic translation elongation factor 2 ( eEF-2 ) gene] using the C lustered R egularly I nterspaced S hort P alindromic R epeats/ C rispr as sociated 9 (CRISPR/Cas9) system. We used in vitro synthesized single-stranded DNAs (about 0.5-kb long) that code for amiRNA sequences as repair templates in CRISPR/Cas9 mutagenesis. Using this approach we demonstrate that amiRNA cassettes against exogenous (eGFP) or endogenous [ orthodenticle homeobox 2 ( Otx2 )] genes can be efficiently targeted to a predetermined locus in the genome and result in knockdown of gene expression. We also provide a strategy to establish conditional knockdown models with this method.
机译:可以调节基因剂量的基因敲除小鼠模型提供了对基因功能的宝贵见解。通常,此类模型是通过敲除表达盒的基于胚胎干(ES)细胞的靶向插入或前核注射生成的。但是,这些方法与费时费力的步骤相关,例如生成具有表达功能性RNAi盒所需的元件的大型构建体,ES细胞处理或筛选具有所需敲除效果的小鼠。在这里,我们证明了可靠的敲低模型可以通过使用C有针对性地将人工microRNA(amiRNA)序列插入基因组中的特定位点[例如内源性真核翻译延伸因子2(eEF-2)基因的内含子区域]来生成有光泽的异形间隔短曲折回合R周期/关联9(CRISPR / Cas9)系统。我们在CRISPR / Cas9诱变中使用体外合成的单链DNA(长约0.5 kb)编码amiRNA序列作为修复模板。使用这种方法,我们证明了针对外源(eGFP)或内源[直齿同源盒2(Otx2)]基因的amiRNA盒可以有效地靶向基因组中的预定位点,并导致基因表达的降低。我们还提供了使用此方法建立条件组合式模型的策略。

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