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Engineering Inducible Knock-In Mice To Model Oncogenic Brain Tumor Mutations From Endogenous Loci

机译:工程诱导诱导敲入小鼠以建模内源性基因座致癌性脑肿瘤突变。

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摘要

To maximize the physiological relevance of in vivo brain tumor mouse models designed to study the downstream effects of oncogenic mutations, it is important to express the mutated genes at appropriate levels, in relevant cell types, and in the proper developmental context. For recurrent mutations found in the heterozygous state in tumors, expression of the mutation from the endogenous locus is a more physiologically relevant recapitulation of the brain tumor genome. Here, we describe an approach to generate knock-in mice with an inducible mutation recombined into the endogenous locus. In these engineered mice, the mutated allele is designed for expression controlled by the endogenous promoter and regulatory elements after Cre recombinase-mediated deletion of a loxP-STOP-loxP cassette inserted upstream of the translational start site. To preserve the structure of the endogenous locus, mutations or additional elements may need to be inserted at a considerable distance from the loxP-STOP-loxP cassette. We used recombineering to build a construct with two selectable markers and multiple genetic alterations that can be introduced into the endogenous allele in cis with a single ES cell targeting.
机译:为了最大化旨在研究致癌突变的下游效应的体内脑肿瘤小鼠模型的生理相关性,重要的是在适当的水平,相关的细胞类型和适当的发育背景下表达突变的基因。对于在肿瘤中以杂合状态发现的复发突变,来自内源基因座的突变的表达是脑肿瘤基因组在生理上更相关的概括。在这里,我们描述了一种产生可诱导突变并重组入内源基因座的敲入小鼠的方法。在这些工程小鼠中,突变的等位基因设计用于在Cre重组酶介导的翻译起始位点上游插入的loxP-STOP-loxP盒缺失后,受内源性启动子和调控元件控制的表达。为了保留内源基因座的结构,可能需要在距loxP-STOP-loxP盒相当远的距离处插入突变或其他元件。我们使用重组工程构建了一个带有两个选择标记和多个遗传变异的构建体,可以通过单个ES细胞靶向将其引入顺式内源等位基因中。

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