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CRISPR/Cas9-mediated knock-in of an optimized TetO repeat for live cell imaging of endogenous loci

机译:CRISPR / Cas9介导的优化TetO重复序列的敲入,用于内源基因座的活细胞成像

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摘要

Nuclear organization has an important role in determining genome function; however, it is not clear how spatiotemporal organization of the genome relates to functionality. To elucidate this relationship, a method for tracking any locus of interest is desirable. Recently clustered regularly interspaced short palindromic repeats (CRISPR)/CRISPR-associated protein 9 (Cas9) or transcription activator-like effectors were adapted for imaging endogenous loci; however, they are mostly limited to visualization of repetitive regions. Here, we report an efficient and scalable method named SHACKTeR (Short Homology and CRISPR/Cas9-mediated Knock-in of a TetO Repeat) for live cell imaging of specific chromosomal regions without the need for a pre-existing repetitive sequence. SHACKTeR requires only two modifications to the genome: CRISPR/Cas9-mediated knock-in of an optimized TetO repeat and its visualization by TetR-EGFP expression. Our simplified knock-in protocol, utilizing short homology arms integrated by polymerase chain reaction, was successful at labeling 10 different loci in HCT116 cells. We also showed the feasibility of knock-in into lamina-associated, heterochromatin regions, demonstrating that these regions prefer non-homologous end joining for knock-in. Using SHACKTeR, we were able to observe DNA replication at a specific locus by long-term live cell imaging. We anticipate the general applicability and scalability of our method will enhance causative analyses between gene function and compartmentalization in a high-throughput manner.
机译:核组织在决定基因组功能方面起着重要作用。然而,尚不清楚基因组的时空组织与功能之间的关系。为了阐明这种关系,需要一种用于追踪任何关注基因座的方法。最近聚类的规则间隔的短回文重复序列(CRISPR)/ CRISPR相关蛋白9(Cas9)或转录激活因子样效应子适用于成像内源基因座;但是,它们主要限于可视化重复区域。在这里,我们报告了一种有效且可扩展的方法,称为SHACKTeR(短同源性和CRISPR / Cas9介导的TetO重复序列的敲入),用于特定染色体区域的活细胞成像,而无需预先存在的重复序列。 SHACKTeR仅需要对基因组进行两个修饰:优化的TetO重复序列的CRISPR / Cas9介导的敲入及其通过TetR-EGFP表达的可视化。我们的简化敲入方案利用聚合酶链反应整合的短同源性臂,成功标记了HCT116细胞中的10个不同基因座。我们还显示了敲入层相关的异染色质区域的可行性,表明这些区域更喜欢使用非同源末端连接进行敲入。使用SHACKTeR,我们能够通过长期的活细胞成像观察特定位点的DNA复制。我们预计我们方法的一般适用性和可扩展性将以高通量的方式增强基因功能与区室化之间的因果关系分析。

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