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首页> 外文期刊>Genetics: A Periodical Record of Investigations Bearing on Heredity and Variation >Gene Knock-Ins in Drosophila Using Homology-Independent Insertion of Universal Donor Plasmids
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Gene Knock-Ins in Drosophila Using Homology-Independent Insertion of Universal Donor Plasmids

机译:使用同源无关的普通供体质粒的果蝇基因敲-Ins

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摘要

Targeted genomic knock-ins are a valuable tool to probe gene function. However, knock-in methods involving homology-directed repair (HDR) can be laborious. Here, we adapt the mammalian CRISPaint [clustered regularly interspaced short palindromic repeat (CRISPR)-assisted insertion tagging] homology-independent knock-in method for Drosophila melanogaster, which uses CRISPR/Cas9 and nonhomologous end joining to insert "universal" donor plasmids into the genome. Using this method in cultured S2R+ cells, we efficiently tagged four endogenous proteins with the bright fluorescent protein mNeonGreen, thereby demonstrating that an existing collection of CRISPaint universal donor plasmids is compatible with insect cells. In addition, we inserted the transgenesis marker 3xP3-red fluorescent protein into seven genes in the fly germ line, producing heritable loss-of-function alleles that were isolated by simple fluorescence screening. Unlike in cultured cells, insertions/deletions always occurred at the genomic insertion site, which prevents predictably matching the insert coding frame to the target gene. Despite this effect, we were able to isolate T2A-Gal4 insertions in four genes that serve as in vivo expression reporters. Therefore, homology-independent insertion in Drosophila is a fast and simple alternative to HDR that will enable researchers to dissect gene function.
机译:有针对性的基因组敲-Ins是探测基因功能的有价值的工具。然而,涉及同源定向修复(HDR)的敲门方法可能是费力的。在这里,我们适应哺乳动物脆e[集群定期间隙的短语重复(CRISPR) - 译名标签]同源独立于果蝇Melanogaster的同源敲入方法,它使用CRISPR / CAS9和非博学终端连接,将“通用”供体质粒插入基因组。在培养的S2R +细胞中使用该方法,我们用明亮的荧光蛋白mneongreen有效地标记了四种内源性蛋白质,从而证明现有的Crespaint通用供体质粒与昆虫细胞相容。此外,我们将转基因标志物3xP3-红色荧光蛋白插入捕蝇菌中的七个基因,产生通过简单的荧光筛选分离的遗传缺失等位基因。与培养的细胞不同,插入/缺失总是发生在基因组插入位点上,这防止可预测地匹配插入编码帧至靶基因。尽管有这种效果,我们能够在四种基因中隔离T2A-Gal4插入,其作为体内表达记者。因此,在果蝇中的同源性依赖性插入是对HDR的快速简单的替代方案,使研究人员能够将基因函数分辨。

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