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Spontaneous mitotic homologous recombination at an enhanced yellow fluorescent protein (EYFP) cDNA direct repeat in transgenic mice

机译:在转基因小鼠中增强的黄色荧光蛋白(EYFP)cDNA直接重复的自发有丝分裂同源重组

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A transgenic mouse has been created that provides a powerful tool for revealing genetic and environmental factors that modulate mitotic homologous recombination. The fluorescent yellow direct-repeat (FYDR) mice described here carry two different copies of expression cassettes for truncated coding sequences of the enhanced yellow fluorescent protein (EYFP), arranged in tandem. Homologous recombination between these repeated elements can restore full-length EYFP coding sequence to yield a fluorescent phenotype, and the resulting fluorescent recombinant cells are rapidly quantifiable by flow cytometry. Analysis of genomic DNA from recombined FYDR cells shows that this mouse model detects gene conversions, and based on the arrangement of the integrated recombination substrate, unequal sister-chromatid exchanges and repair of collapsed replication forks are also expected to reconstitute EYFP coding sequence. The rate of spontaneous recombination in primary fibroblasts derived from adult ear tissue is; 1.3+/-0.1 per 10(6) cell divisions. Interestingly, the rate is approximate to10-fold greater in fibroblasts derived from embryonic tissue. We observe an approximate to15-fold increase in the frequency of recombinant cells in cultures of ear fibroblasts when exposed to mitomycin C, which is consistent with the ability of interstrand crosslinks to induce homologous recombination. In addition to studies of recombination in cultured primary cells, the frequency of recombinant cells present in skin was also measured by direct analysis of disaggregated cells. Thus, the FYDR mouse model can be used for studies of mitotic homologous recombination both in vitro and in vivo. [References: 56]
机译:已经创建了一种转基因小鼠,该小鼠提供了用于揭示调节有丝分裂同源重组的遗传和环境因素的有力工具。本文所述的荧光黄色直接重复(FYDR)小鼠带有两个不同的表达盒拷贝,这些表达盒串联排列了增强的黄色荧光蛋白(EYFP)的截短编码序列。这些重复元件之间的同源重组可恢复全长EYFP编码序列,以产生荧光表型,并且所得的荧光重组细胞可通过流式细胞术快速定量。对重组FYDR细胞的基因组DNA的分析表明,该小鼠模型可检测基因转化,并且基于整合重组底物的排列,不均等的姐妹染色单体交换和折叠复制叉的修复也有望重新构建EYFP编码序列。来自成年耳朵组织的原代成纤维细胞的自发重组率为:每10(6)个单元格1.3 +/- 0.1。有趣的是,在源自胚胎组织的成纤维细胞中,该比率大约高10倍。我们观察到当暴露于丝裂霉素C时,成耳细胞培养物中重组细胞的频率增加了约15倍,这与链间交联诱导同源重组的能力是一致的。除了研究培养的原代细胞中的重组外,还可以通过直接分析分解的细胞来测量皮肤中存在的重组细胞的频率。因此,FYDR小鼠模型可用于体外和体内有丝分裂同源重组的研究。 [参考:56]

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