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An efficient method for generation of bi-allelic null mutant mouse embryonic stem cells and its application for investigating epigenetic modifiers

机译:一种产生双等位基因无效突变小鼠胚胎干细胞的有效方法及其在表观遗传修饰子研究中的应用

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摘要

Mouse embryonic stem (ES) cells are a popular model system to study biological processes, though uncovering recessive phenotypes requires inactivating both alleles. Building upon resources from the International Knockout Mouse Consortium (IKMC), we developed a targeting vector for second allele inactivation in conditional-ready IKMC ‘knockout-first’ ES cell lines. We applied our technology to several epigenetic regulators, recovering bi-allelic targeted clones with a high efficiency of 60% and used Flp recombinase to restore expression in two null cell lines to demonstrate how our system confirms causality through mutant phenotype reversion. We designed our strategy to select against re-targeting the ‘knockout-first’ allele and identify essential genes in ES cells, including the histone methyltransferase Setdb1. For confirmation, we exploited the flexibility of our system, enabling tamoxifen inducible conditional gene ablation while controlling for genetic background and tamoxifen effects. Setdb1 ablated ES cells exhibit severe growth inhibition, which is not rescued by exogenous Nanog expression or culturing in naive pluripotency ‘2i’ media, suggesting that the self-renewal defect is mediated through pluripotency network independent pathways. Our strategy to generate null mutant mouse ES cells is applicable to thousands of genes and repurposes existing IKMC Intermediate Vectors.
机译:小鼠胚胎干(ES)细胞是研究生物学过程的流行模型系统,尽管发现隐性表型需要使两个等位基因失活。基于国际基因敲除小鼠协会(IKMC)的资源,我们开发了靶向载体,用于条件就绪的IKMC“基因敲除优先” ES细胞系中第二次等位基因失活。我们将技术应用于多种表观遗传调控因子,以60%的高效率回收了双等位基因靶向克隆,并使用Flp重组酶在两个空细胞系中恢复表达,以证明我们的系统如何通过突变表型回复确认因果关系。我们设计了策略,以选择不重新定位“敲除优先”等位基因,并鉴定ES细胞中的必需基因,包括组蛋白甲基转移酶Setdb1。为了证实这一点,我们利用了系统的灵活性,在控制遗传背景和他莫昔芬效应的同时,启用了他莫昔芬可诱导的条件基因消融。 Setdb1消融的ES细胞表现出严重的生长抑制作用,这不能通过外源Nanog表达或在幼稚的多能性“ 2i”培养基中培养来挽救,这表明自我更新缺陷是通过多能性网络独立途径介导的。我们产生无效突变小鼠ES细胞的策略适用于数千种基因,并重新利用了现有的IKMC中间载体。

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