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Designing Packaging and Delivery of High Titer CRISPR Retro and Lentiviruses via Stereotaxic Injection

机译:通过立体定向注射设计包装和递送高滴度CRISPR逆转录病毒和慢病毒

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摘要

Replication defective lentiviruses or retroviruses are capable of stably integrating transgenes into the genome of an infected host cell. This technique has been widely used to encode fluorescent proteins, opto- or chemo-genetic controllers of cell activity, or heterologous expression of human genes in model organisms. These viruses have also successfully been used to deliver recombinases to relevant target sites in transgenic animals, or even deliver small hairpin or micro RNAs in order to manipulate gene expression. While these techniques have been fruitful, they rely on transgenic animals (recombinases) or frequently lack high efficacy and specificity (shRNA/miRNA). In contrast, the CRISPR/Cas system uses an exogenous Cas nuclease which targets specific sites in an organism's genome via an exogenous guide RNA in order to induce double stranded breaks in DNA. These breaks are then repaired by non-homologous end joining (NHEJ), producing insertion and deletion (indel) mutations that can result in deleterious missense or nonsense mutations. This manuscript provides detailed methods for the design, production, injection, and validation of single lenti/retro virus particles that can stably transduce neurons to express a fluorescent reporter, Cas9, and sgRNAs to knockout genes in a model organism.
机译:复制缺陷型慢病毒或逆转录病毒能够将转基因稳定整合到感染宿主细胞的基因组中。该技术已被广泛用于编码荧光蛋白,细胞活性的光遗传或化学遗传控制器或模型生物中人类基因的异源表达。这些病毒也已成功用于将重组酶传递至转基因动物的相关靶位,甚至传递小发夹或微小RNA,以操纵基因表达。尽管这些技术卓有成效,但它们依赖转基因动物(重组酶)或经常缺乏高效性和特异性(shRNA / miRNA)。相反,CRISPR / Cas系统使用外源Cas核酸酶,该酶通过外源引导RNA靶向生物体基因组中的特定位点,以诱导DNA中的双链断裂。然后,通过非同源末端连接(NHEJ)修复这些断裂,产生插入和缺失(indel)突变,这些突变可能导致有害的错义或无义突变。该手稿提供了设计,生产,注射和验证单个慢病毒/逆转录病毒颗粒的详细方法,这些颗粒可以稳定地转导神经元以表达荧光报告基因,Cas9和sgRNA来敲除模型生物中的基因。

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