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Generating viable mice with heritable embryonically lethal mutations using the CRISPR-Cas9 system in two-cell embryos

机译:使用在双细胞胚胎中使用CRISPR-CAS9系统产生具有遗传性胚胎致命突变的可行性小鼠

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摘要

A substantial number of mouse genes, about 25%, are embryonically lethal when knocked out. Using current genetic tools, such as the CRISPR-Cas9 system, it is difficult-or even impossible-to produce viable mice with heritable embryonically lethal mutations. Here, we establish a one-step method for microinjection of CRISPR reagents into one blastomere of two-cell embryos to generate viable chimeric founder mice with a heritable embryonically lethal mutation, of either Virma or Dpm1. By examining founder mice, we identify a phenotype and role of Virma in regulating kidney metabolism in adult mice. Additionally, we generate knockout mice with a heritable postnatally lethal mutation, of either Slc17a5 or Ctla-4, and study its function in vivo. This one-step method provides a convenient system that rapidly generates knockout mice possessing lethal phenotypes. This allows relatively easy in vivo study of the associated genes' functions.
机译:大量的小鼠基因,约25%在敲除时是胚胎致命的。使用当前的遗传工具,例如CRISPR-CAS9系统,难以甚至不可能 - 以遗传胚胎致命突变产生可行的小鼠。在这里,我们建立了一种用于将CRISPR试剂的微注射到两种细胞胚胎的一个斑点的一步法,以产生具有遗传性胚胎致命突变的可行的嵌合创始小鼠,其中VIRMA或DPM1。通过检查创始小鼠,我们鉴定了VIRMA在成年小鼠中调节肾代谢时的表型和作用。另外,我们产生具有SLC17A5或CTLA-4的可遗传性后致死突变的敲除小鼠,并研究其在体内的功能。该一步法提供了一种方便的系统,快速产生具有致命表型的敲除小鼠。这允许在相关基因的功能的体内研究中相对容易。

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