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Application of counter-selectable marker PIGA in engineering designer deletion cell lines and characterization of CRISPR deletion efficiency

机译:反应选择标记仔猪在工程设计师删除细胞系中的应用及CRISPR缺失效率的表征

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摘要

The CRISPR/Cas9 system is a technology for genome engineering, which has been applied to indel mutations in genes as well as targeted gene deletion and replacement. Here, we describe paired gRNA deletions along the PIGA locus on the human X chromosome ranging from 17 kb to 2 Mb. We found no compelling linear correlation between deletion size and the deletion efficiency, and there is no substantial impact of topologically associating domains on deletion frequency. Using this precise deletion technique, we have engineered a series of designer deletion cell lines, including one with deletions of two X-chromosomal counterselectable (negative selection) markers, PIGA and HPRT1, and additional cell lines bearing each individual deletion. PIGA encodes a component of the glycosylphosphatidylinositol (GPI) anchor biosynthetic apparatus. The PIGA gene counterselectable marker has unique features, including existing single cell level assays for both function and loss of function of PIGA and the existence of a potent counterselectable agent, proaerolysin, which we use routinely for selection against cells expressing PIGA. These designer cell lines may serve as a general platform with multiple selection markers and may be particularly useful for large scale genome engineering projects such as Genome Project-Write (GP-write).
机译:CRISPR / CAS9系统是基因组工程技术,已应用于基因中的吲哚突变以及靶向基因缺失和更换。在此,我们描述沿人X染色体上的仔猪基因座的配对GRNA缺失,范围为17 kB至2 MB。我们发现删除尺寸与删除效率之间没有引人注目的线性相关性,并且拓扑相关域对删除频率没有大量影响。使用这种精确的删除技术,我们已经设计了一系列设计者缺失细胞系,包括缺少两个X-染色体计数(阴性选择)标记,仔猪和HPRT1的缺失,以及每个单独的缺失的额外细胞系。 PIGA编码糖基磷脂酰肌醇(GPI)锚生物合成装置的组分。仔猪基因抵抗标记具有独特的特征,包括仔猪功能和鸽子功能丧失的现有单细胞水平测定以及有效的占代理剂,预溶素,我们通常用于对表达仔猪的细胞进行选择。这些设计者细胞系可以用作具有多个选择标记的一般平台,并且对于大规模基因组工程项目,例如基因组项目写入(GP-Write)特别有用。

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