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Endogenous zebrafish proneural Cre drivers generated by CRISPR/Cas9 short homology directed targeted integration

机译:内源性斑马鱼散气泄裂驱动器由CRISPR / CAS9短同源性指向目标集成

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摘要

Abstract We previously reported efficient precision targeted integration of reporter DNA in zebrafish and human cells using CRISPR/Cas9 and short regions of homology. Here, we apply this strategy to isolate zebrafish Cre recombinase drivers whose spatial and temporal restricted expression mimics endogenous genes. A 2A-Cre recombinase transgene with 48 bp homology arms was targeted into proneural genes ascl1b, olig2 and neurod1. We observed high rates of germline transmission ranging from 10 to 100% (2/20 olig2; 1/5 neurod1; 3/3 ascl1b). The transgenic lines Tg(ascl1b-2A-Cre) is75 , Tg(olig2-2A-Cre) is76 , and Tg(neurod1-2A-Cre) is77 expressed functional Cre recombinase in the expected proneural cell populations. Somatic targeting of 2A-CreERT2 into neurod1 resulted in tamoxifen responsive recombination in the nervous system. The results demonstrate Cre recombinase expression is driven by the native promoter and regulatory elements of the targeted genes. This approach provides a straightforward, efficient, and cost-effective method to generate cell type specific zebrafish Cre and CreERT2 drivers, overcoming challenges associated with promoter-BAC and transposon mediated transgenics.
机译:摘要我们以前报告了使用CRISPR / CAS9和同源性的短地区Zebrafish和人类细胞中报告DNA的高效精度综合整合。在这里,我们应用这种策略来分离斑马鱼Cre重组酶驱动程序,其空间和时间限制表达模拟内源基因。具有48bp同源臂的2A-CRE重组酶转基因靶向散装基因ASCL1B,OLIG2和NEUROD1。我们观察到从10至100%的种系传动速率高(2/20 olig2; 1/5 neurod1; 3/3 ASCL1B)。转基因系Tg(Ascl1b-2a-cre)是75,Tg(olig2a-cre)is76和Tg(neurod1-2a-cre)Is77表达翼状胬肉中的官能Cre重组酶。 2A-Cremert2进入神经元的体细胞靶向导致神经系统中的Tamoxifen响应性重组。结果表明CRE重组酶表达由靶向基因的天然启动子和调节元件驱动。该方法提供了一种直接,有效和经济有效的方法,用于产生细胞类型特定斑马鱼CRE和Crept2驱动器,克服与启动子-BAC和转座子介导的转基因相关的挑战。

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