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CRISPR-Cas9-mediated genome editing in one blastomere of two-cell embryos reveals a novel Tet3 function in regulating neocortical development

机译:在两个细胞胚胎的一个卵裂球中,CRISPR-Cas9介导的基因组编辑揭示了新的Tet3在调节新皮层发育中的功能

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摘要

Studying the early function of essential genes is an important and challenging problem in developmental biology. Here, we established a method for rapidly inducing CRISPR-Cas9-mediated mutations in one blastomere of two-cell stage embryos, termed 2-cell embryo-CRISPR-Cas9 injection (2CC), to study the in vivo function of essential (or unknown) genes in founder chimeric mice. By injecting both Cre mRNA and CRISPR-Cas9 targeting the gene of interest into fluorescent reporter mice, the 2CC method can trace both wild-type and mutant cells at different developmental stages, offering internal control for phenotypic analyses of mutant cells. Using this method, we identified novel functions of the essential gene Tet3 in regulating excitatory and inhibitory synaptic transmission in the developing mouse cerebral cortex. By generating chimeric mutant mice, the 2CC method allows for the rapid screening of gene function in multiple tissues and cell types in founder chimeric mice, significantly expanding the current armamentarium of genetic tools.
机译:研究必需基因的早期功能是发育生物学中一个重要且具有挑战性的问题。在这里,我们建立了一种在两细胞阶段胚胎的卵裂球中快速诱导CRISPR-Cas9介导的突变的方法,称为2-细胞胚胎-CRISPR-Cas9注射液(2CC),以研究必需的(或未知的)体内功能)创始人嵌合小鼠中的基因。通过将靶向目标基因的Cre mRNA和CRISPR-Cas9注射到荧光报告基因小鼠中,2CC方法可以追踪处于不同发育阶段的野生型和突变细胞,从而为突变细胞的表型分析提供了内部控制。使用此方法,我们确定了必需基因Tet3在调节发育中的小鼠大脑皮层的兴奋性和抑制性突触传递中的新功能。通过生成嵌合突变小鼠,2CC方法可以快速筛选创始人嵌合小鼠中多种组织和细胞类型的基因功能,从而大大扩展了目前遗传工具的装备范围。

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