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Identification of Genes Regulating Gene Targeting by a High-Throughput Screening Approach

机译:高通量筛选方法鉴定调控基因靶向的基因

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摘要

Homologous gene targeting (HGT) is a precise but inefficient process for genome engineering. Several methods for increasing its efficiency have been developed, including the use of rare cutting endonucleases. However, there is still room for improvement, as even nuclease-induced HGT may vary in efficiency as a function of the nuclease, target site, and cell type considered. We have developed a high-throughput screening assay for the identification of factors stimulating meganuclease-induced HGT. We used this assay to explore a collection of siRNAs targeting 19,121 human genes. At the end of secondary screening, we had identified 64 genes for which knockdown affected nuclease-induced HGT. Two of the strongest candidates were characterized further. We showed that siRNAs directed against the ATF7IP gene, encoding a protein involved in chromatin remodeling, stimulated HGT by a factor of three to eight, at various loci and in different cell types. This method thus led to the identification of a number of genes, the manipulation of which might increase rates of targeted recombination.
机译:同源基因靶向(HGT)是基因组工程的精确但效率低下的过程。已经开发了几种提高效率的方法,包括使用稀有切割核酸内切酶。但是,仍然存在改进的空间,因为甚至核酸酶诱导的HGT的效率也可能随所考虑的核酸酶,靶位点和细胞类型而变化。我们已经开发了一种高通量筛选测定法,用于鉴定刺激大范围核酸酶诱导的HGT的因子。我们使用该测定法探索了靶向19121个人类基因的siRNA的集合。在二次筛选结束时,我们已经鉴定出了敲除影响核酸酶诱导的HGT的64个基因。进一步筛选了两名最强候选人。我们发现,针对ATF7IP基因的siRNA编码参与染色质重塑的蛋白质,在不同的基因座和不同的细胞类型中通过三到八倍的因子刺激了HGT。因此,该方法导致了许多基因的鉴定,对其进行操作可能会增加靶向重组的速率。

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