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Blastocyst Formation Rate and Transgene Expression are Associated with Gene Insertion into Safe and Non-Safe Harbors in the Cattle Genome

机译:胚泡形成率和转基因表达与基因插入牛基因组中安全和非安全港有关。

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摘要

Integration target site is the most important factor in successful production of transgenic animals. However, stable expression of transgene without disturbing the function of the host genome depends on promoter methylation, transgene copy number and transcriptional activity in integration regions. Recently, new genome-editing tools have made much progress, however little attention has been paid to the identification of genomic safe harbors. The aim of the present study was to evaluate the effect of insertion site, promoter and copy number of transgene on the production of embryos from cattle fibroblast cells following somatic cell nuclear transfer (SCNT). So, three donor vectors were constructed with EGFP gene under control of different promoters. Each vector was integrated into safe and non-safe harbors in the genome using phiC31 integrase. Transgenic clones with a single copy of each vector were isolated. Each clone was analyzed to find site and frequency of integration, expression level and promoter methylation before SCNT, as well as transgene expression level and blastocyst formation rate after SCNT. The data obtained demonstrated that BF5, as a safe harbor, not only showed a stable expression, but also the rate of in vitro-produced embryos from BF5-clones are similar to that of non-transfected cells.
机译:整合靶位点是成功生产转基因动物的最重要因素。然而,在不干扰宿主基因组功能的情况下稳定表达转基因取决于启动子甲基化,转基因拷贝数和整合区的转录活性。最近,新的基因组编辑工具取得了长足的进步,但是很少有人关注基因组安全港的鉴定。本研究的目的是评估体细胞核移植(SCNT)后转基因的插入位点,启动子和拷贝数对牛成纤维细胞胚胎产生的影响。因此,在不同启动子的控制下,用EGFP基因构建了三个供体载体。使用phiC31整合酶将每个载体整合到基因组中的安全港和非安全港。分离具有每个载体一个拷贝的转基因克隆。分析每个克隆以发现整合位点和频率,SCNT之前的表达水平和启动子甲基化,以及SCNT之后的转基因表达水平和胚泡形成率。获得的数据表明,作为安全港的BF5不仅显示稳定的表达,而且BF5克隆体外产生的胚胎的发生率与未转染的细胞相似。

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