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Generation of focal mutations and large genomic deletions in the pancreas using inducible in vivo genome editing

机译:使用诱导体内基因组编辑的胰腺突变和大型基因组缺失的产生

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摘要

Beyond the nearly uniform presence of KRAS mutations, pancreatic cancer is increasingly recognized as a heterogeneous disease. Preclinical in vivo model systems exist, but with the advent of precision oncology, murine models with enhanced genetic flexibility are needed to functionally annotate genetic alterations found in the human malignancy. Here, we describe the generation of focal gene disruptions and large chromosomal deletions via inducible and pancreas-specific expression of Cas9 in adult mice. Experimental mice are derived on demand directly from genetically engineered embryonic stem cells, without the need for further intercrossing. To provide initial validation of our approach, we show that disruption of the E3 ubiquitin ligase Rnf43 accelerates Kras(G12D)-dependent tumourigenesis. Moreover, we demonstrate that this system can be used to rapidly interrogate the impact of complex cancer-associated alleles through the generation of a previously unstudied 1.2 megabase deletion surrounding the CDKN2A and CDKN2B tumour suppressors. Thus, our approach is capable of reproducibly generating biallelic and precise loss of large chromosomal fragments that, in conjunction with mutant Kras, leads to development of pancreatic ductal adenocarcinoma with full penetrance.
机译:除了克拉斯突变的几乎均匀存在之外,胰腺癌越来越被认为是异质疾病。存在临床前体内模型系统,但随着精密肿瘤的出现,需要增强遗传灵活性的鼠模型来在人类恶性肿瘤中发现遗传改变。在这里,我们通过成年小鼠中Cas9的诱导和胰腺特异性表达来描述局灶性基因破坏和大染色体缺失的产生。实验小鼠直接来自转基因胚胎干细胞的需求,而无需进一步的交互。为了提供我们的方法的初始验证,我们表明E3泛素连接酶RNF43的破坏加速了KRA(G12D)依赖性肿瘤内血。此外,我们证明,该系统可用于通过产生围绕CDKN2A和CDKN2B肿瘤抑制剂的先前未捕获的1.2兆族缺失来迅速询问复杂癌症相关等位基因的影响。因此,我们的方法能够再现地产生与突变体KRA相结合的双曲线和精确损失,导致胰腺导管腺癌的开发具有完全渗透。

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  • 来源
    《Carcinogenesis 》 |2020年第3期| 共11页
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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 肿瘤学 ;
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