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Random Splicing of Several Exons Caused by a Single Base Change in the Target Exon of CRISPR/Cas9 Mediated Gene Knockout

机译:由CRISPR / Cas9介导的基因敲除的靶外显子的单个碱基改变引起的几个外显子的随机剪接

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摘要

The clustered regularly interspaced short palindromic repeats (CRISPR)-associated sequence 9 (CRISPR/Cas9) system is widely used for genome editing purposes as it facilitates an efficient knockout of a specific gene in, e.g. cultured cells. Targeted double-strand breaks are introduced to the target sequence of the guide RNAs, which activates the cellular DNA repair mechanism for non-homologous-end-joining, resulting in unprecise repair and introduction of small deletions or insertions. Due to this, sequence alterations in the coding region of the target gene frequently cause frame-shift mutations, facilitating degradation of the mRNA. We here show that such CRISPR/Cas9-mediated alterations in the target exon may also result in altered splicing of the respective pre-mRNA, most likely due to mutations of splice-regulatory sequences. Using the human FLOT-1 gene as an example, we demonstrate that such altered splicing products also give rise to aberrant protein products. These may potentially function as dominant-negative proteins and thus interfere with the interpretation of the data generated with these cell lines. Since most researchers only control the consequences of CRISPR knockout at genomic and protein level, our data should encourage to also check the alterations at the mRNA level.
机译:簇状规则间隔的短回文重复序列(CRISPR)相关序列9(CRISPR / Cas9)系统被广泛用于基因组编辑目的,因为它有助于高效敲除特定基因,例如培养的细胞。靶向的双链断裂被引入到指导RNA的靶序列中,从而激活了细胞DNA修复机制,用于非同源末端连接,导致修复不精确并引入了小的缺失或插入。因此,靶基因的编码区中的序列改变经常引起移码突变,从而促进mRNA的降解。我们在这里显示,目标外显子中的这种CRISPR / Cas9介导的改变也可能导致相应的前mRNA的剪接发生改变,这很可能是由于剪接调控序列的突变所致。以人类FLOT-1基因为例,我们证明了这种改变的剪接产物也产生了异常的蛋白质产物。这些可能潜在地起显性负性蛋白质的作用,因此干扰了用这些细胞系产生的数据的解释。由于大多数研究人员仅在基因组和蛋白质水平上控制CRISPR基因敲除的后果,因此我们的数据应鼓励也在mRNA水平上检查变化。

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