首页> 外文期刊>The Journal of Reproduction and Development >Effects of Downregulating DNA Methyltransferase 1 Transcript by RNA Interference on DNA Methylation Status of the Satellite I Region and In Vitro Development of Bovine Somatic Cell Nuclear Transfer Embryos
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Effects of Downregulating DNA Methyltransferase 1 Transcript by RNA Interference on DNA Methylation Status of the Satellite I Region and In Vitro Development of Bovine Somatic Cell Nuclear Transfer Embryos

机译:RNA干扰下调DNA甲基转移酶1转录产物对卫星I区DNA甲基化状态和牛体细胞核移植胚胎体外发育的影响

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For the successful production of cloned animals by somatic cell nuclear transfer (NT), the epigenetic status of the differentiated donor cell is reversed to an embryonic totipotent status. However, in NT embryos, this process is aberrant, with genomic hypermethylation consistently observed. Here, we investigated the effects of silencing DNA methyltransferase 1 ( DNMT1 ) mRNA by small interfering RNA (siRNA) on the DNA methylation status of the satellite I region and in vitro development of bovine NT embryos. First, the levels of DNMT1 expression were analyzed at 0, 24, 48, 72, 120 and 192 h after in vitro culture. Real-time PCR and western blotting analyses detected a significant decrease in DNMT1 mRNA in the siRNA-injected NT (siRNA-NT) group up to 72 h after in vitro culture. Next, the levels of DNA methylation of the satellite I region were analyzed at several time points after in vitro culture. The level of DNA methylation detected in siRNA-NT embryos was significantly less than those in NT embryos throughout in vitro development. Moreover, the developmental rate of embryos to blastocysts in the siRNA-NT group was significantly higher than that of NT embryos. Our data suggest that knockdown of DNMT1 mRNA in NT embryos can induce DNA demethylation, which may enhance reprogramming efficiency.
机译:为了通过体细胞核移植(NT)成功生产出克隆的动物,已分化的供体细胞的表观遗传状态被反转为胚胎全能状态。但是,在NT胚胎中,该过程异常,始终观察到基因组高甲基化。在这里,我们研究了通过小分子干扰RNA(siRNA)沉默DNA甲基转移酶1(DNMT1)mRNA对卫星I区DNA甲基化状态和牛NT胚胎体外发育的影响。首先,在体外培养后0、24、48、72、120和192小时分析DNMT1表达水平。实时PCR和western印迹分析检测到在体外培养后长达72 h,注射siRNA的NT(siRNA-NT)组中DNMT1 mRNA的显着降低。接下来,在体外培养后的几个时间点分析卫星I区的DNA甲基化水平。在整个体外发育过程中,在siRNA-NT胚胎中检测到的DNA甲基化水平显着低于NT胚胎中的DNA甲基化水平。而且,在siRNA-NT组中,胚胎发育为胚泡的速度显着高于NT胚胎。我们的数据表明,敲除NT胚胎中DNMT1 mRNA可以诱导DNA去甲基化,这可能会提高重编程效率。

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