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Enhanced Golic plus : highly effective CRISPR gene targeting and transgene HACKing in Drosophila

机译:增强的golic plus:在果蝇中的高效Crisp基因靶向和转基因黑客

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Gene targeting is an incredibly valuable technique. Sometimes, however, it can also be extremely challenging for various intrinsic reasons (e.g. low target accessibility or nature/extent of gene modification). To bypass these barriers, we designed a transgene-based system in Drosophila that increases the number of independent gene targeting events while at the same time enriching for correctly targeted progeny. Unfortunately, with particularly challenging gene targeting experiments, our original design yielded numerous false positives. Here, we deliver a much-improved technique, named Enhanced Golic+ (E-Golic+). E-Golic+ incorporates genetic modifications to tighten lethality-based selection while simultaneously boosting efficiency. With E-Golic+, we easily achieve previously unattainable gene targeting. Additionally, we built an E-Golic+-based, high-efficiency genetic pipeline for transgene swapping. We demonstrate its utility by transforming GAL4 enhancer-trap lines into tissue-specific Cas9-expressing lines. Given the superior efficiency, specificity and scalability, E-Golic+ promises to expedite development of additional sophisticated genetic/genomic tools in Drosophila.
机译:基因靶向是一种令人难以置信的有价值的技术。然而,有时,由于各种内在原因,它也可能是极其挑战(例如,低目标可访问性或基因改性的性质/程度)。为了绕过这些障碍,我们设计了在果蝇中的基于转基因的系统,该系统在果蝇中增加了靶向事件的独立基因的数量,同时富集正确靶向后代。遗憾的是,由于靶向实验的基因特别具有挑战性,我们的原始设计产生了许多误报。在这里,我们提供了一种更改进的技术,名为增强的Golic +(E-Golic +)。 E-golic +结合遗传修改,以拧紧基于致命的选择,同时提高效率。通过E-golic +,我们很容易达到以前无法实现的基因靶向。此外,我们建立了一种用于转胶交换的E-golic +基于高效的遗传管道。我们通过将GAL4增强子捕集线转化为组织特异性CAS9的线路来展示其效用。鉴于卓越的效率,特殊性和可扩展性,E-Golic +承诺加快果蝇中额外的复杂遗传/基因组工具的发展。

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