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Generation of chromosomal translocations that lead to conditional fusion protein expression using CRISPR-Cas9 and homology-directed repair

机译:使用CRISPR-Cas9和同源性定向修复产生导致条件融合蛋白表达的染色体易位

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摘要

Recurrent chromosomal translocations often lead to expression of fusion proteins associated with oncogenic transformation. To study translocations and downstream events, genome editing techniques have been developed to generate chromosomal translocations through non-homologous end joining of DNA double-strand breaks introduced at the two participating endogenous loci. However, the frequencies at which these events occur is usually too low to efficiently clone cells carrying the translocation. This article provides a detailed method using CRISPR-Cas9 technology and homology- directed repair to efficiently isolate cells harboring a chromosomal translocation. For an additional level of control, the resulting fusion protein is conditionally expressed to allow early events in oncogenic transformation to be studied. We focus on the generation of the EWSR1-WT1 fusion using human mesenchymal cells, which is associated with the translocation found in desmoplastic small round cell tumors.
机译:复发性染色体易位常导致与致癌转化相关的融合蛋白的表达。为了研究易位和下游事件,已经开发了基因组编辑技术,以通过在两个参与的内源基因座处引入的DNA双链断裂的非同源末端连接来产生染色体易位。然而,这些事件发生的频率通常太低而无法有效地克隆携带易位的细胞。本文提供了一种使用CRISPR-Cas9技术和针对同源性的修复方法来有效分离具有染色体易位的细胞的详细方法。为了进一步控制水平,将有条件地表达所得融合蛋白,以便研究致癌转化中的早期事件。我们专注于使用人类间充质细胞生成EWSR1-WT1融合体,这与在增生性小圆形细胞肿瘤中发现的易位有关。

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