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首页> 外文期刊>Reproduction: The official journal of the Society for the Study of Fertility >HDAC inhibition decreases XIST expression on female IVP bovine blastocysts
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HDAC inhibition decreases XIST expression on female IVP bovine blastocysts

机译:HDAC抑制降低雌性IVP牛囊胚的XIST表达

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During initial development, both X chromosomes are active in females, and one of them must be silenced at the appropriate time in order to dosage compensate their gene expression levels to male counterparts. Silencing involves epigenetic mechanisms, including histone deacetylation. Major X chromosome inactivation (XCI) in bovine occurs between hatching and implantation, although in vitro culture conditions might disrupt the silencing process, increasing or decreasing X-linked gene expression. In this study, we aimed to address the roles of histone deacetylase inhibition by trichostatin A (TSA) on female preimplantation development. We tested the hypothesis that by enhancing histone acetylation, TSA would increase the percentage of embryos achieving 16-cell stage, reducing percentage of embryos blocked at 8-cell stage, and interfere with XCI in IVF embryos. We noticed that after TSA treatment, acetylation levels in individual blastomeres of 8–16 cell embryos were increased twofold on treated embryos, and the same was detected for blastocysts. Changes among blastomere levels within the same embryo were diminished on TSA group, as low-acetylated blastomeres were no longer detected. The percentage of embryos that reached the 5th cleavage cycle 118?h after IVF, analyzed by Hoechst staining, remained unaltered after TSA treatment. Then, we assessed XIST and G6PD expression in individual female bovine blastocysts by quantitative real-time PCR. Even though G6PD expression remained unaltered after TSA exposure, XIST expression was eightfold decreased, and we also detected a major decrease in the percentage of blastocysts expressing detectable XIST levels after TSA treatment. Based on these results, we conclude that HDAC is involved on XCI process in bovine embryos, and its inhibition might delay X chromosome silencing and attenuate aberrant XIST expression described for IVF embryos.
机译:在最初发育过程中,两条X染色体均在雌性中活跃,并且其中一条必须在适当的时间沉默,以补偿其基因表达水平与雄性对应。沉默涉及表观遗传机制,包括组蛋白去乙酰化。牛的主要X染色体失活(XCI)发生在孵化和植入之间,尽管体外培养条件可能会破坏沉默过程,从而增加或减少X连锁基因的表达。在这项研究中,我们旨在解决曲古抑菌素A(TSA)抑制组蛋白脱乙酰基酶对女性植入前发育的作用。我们测试了以下假设:通过增强组蛋白乙酰化,TSA将增加达到16个细胞阶段的胚胎的百分比,减少在8个细胞阶段受阻的胚胎的百分比,并干扰IVF胚胎中的XCI。我们注意到,经过TSA处理后,8-16个细胞胚胎的单个卵裂球中的乙酰化水平在处理过的胚胎中增加了两倍,并且对于囊胚也检测到了相同水平。由于不再检测到低乙酰化的卵裂球,所以在TSA组中,同一胚胎内卵裂球水平的变化减少了。通过Hoechst染色分析,体外受精后到达第5个卵裂周期118?h的胚胎百分率在经过TSA处理后保持不变。然后,我们通过定量实时PCR评估了单个雌性牛胚泡中XIST和G6PD的表达。即使在TSA暴露后G6PD表达保持不变,XIST表达仍降低了八倍,而且在TSA处理后,我们还发现表达可检测XIST水平的囊胚百分比显着下降。基于这些结果,我们得出结论,HDAC参与了牛胚胎XCI的过程,其抑制作用可能会延迟X染色体沉默并减弱为IVF胚胎所述的XIST异常表达。

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