Experimental Animal Division, RIKEN BioResource Research Center, Tsukuba, Japan.
Genes Cells. 2021 Apr;26(4):240-245. doi: 10.1111/gtc.12834. Epub 2021 Feb 26.
Site-specific conditional inactivation technologies using Cre-loxP or Flp-FRT systems are becoming increasingly important for the elucidation of gene function and disease mechanism in vivo. A large number of gene knockout mouse models carrying complex conditional alleles have been generated by global community efforts and made available for biomedical researchers. The structures of conditional alleles in these mice are becoming increasingly complex and sophisticated, and so the validation of the genetic quality of these alleles is likewise becoming a laborious task for individual researchers. To ensure the reproducibility of conditional experiments, the researcher should confirm that loxP or FRT is integrated at the correct positions in the genome prior to start of the experiments. We report the successful design of universal PCR primers specific to loxP and FRT for the quick validation of conditional floxed and Flrted alleles. The primer set consists of forward and reverse primers complimentary to the loxP or FRT sequences with partial modifications at the 5' end containing 6-base restriction endonuclease recognition sites. The universal primer set was tested to detect genomic intervals between a pair of cis-integrated loxP or FRT and was useful for quickly validating various floxed or Flrted alleles in conditional mice.
利用 Cre-loxP 或 Flp-FRT 系统的特定部位条件性基因敲除技术对于在体内阐明基因功能和疾病机制变得越来越重要。全球研究人员共同努力,产生了大量携带复杂条件性等位基因的基因敲除小鼠模型,并提供给生物医学研究人员。这些小鼠中条件性等位基因的结构变得越来越复杂和精细,因此,对这些等位基因的遗传质量进行验证对于单个研究人员来说也是一项艰巨的任务。为了确保条件实验的可重复性,研究人员应在实验开始前确认 loxP 或 FRT 是否整合到基因组的正确位置。我们报告了成功设计的通用 PCR 引物,可特异性针对 loxP 和 FRT,用于快速验证条件性 floxed 和 Flrted 等位基因。该引物组由正向和反向引物组成,与 loxP 或 FRT 序列互补,在 5' 端进行了部分修饰,包含 6 个碱基的限制性内切酶识别位点。该通用引物组用于检测一对顺式整合的 loxP 或 FRT 之间的基因组间隔,并可用于快速验证条件性小鼠中的各种 floxed 或 Flrted 等位基因。