首页> 外文OA文献 >Genomic sequencing reveals a positive correlation between the kinetics of strand-specific DNA demethylation of the overlapping estradiol/glucocorticoid-receptor binding sites and the rate of avian vitellogenin mRNA synthesis.
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Genomic sequencing reveals a positive correlation between the kinetics of strand-specific DNA demethylation of the overlapping estradiol/glucocorticoid-receptor binding sites and the rate of avian vitellogenin mRNA synthesis.

机译:基因组测序揭示了重叠的雌二醇/糖皮质激素受体结合位点的链特异性DNA脱甲基动力学与禽卵黄蛋白原mRNA合成速率之间存在正相关。

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摘要

Genomic sequencing was used to study the extent of cytosine methylation of four CpG sites within the regulatory region of the estradiol-inducible avian vitellogenin II gene. Three of these sites, two of which lie within the estradiol-receptor binding site and one in a short stretch of alternating purines and pyrimidines, were initially fully methylated. Analysis of DNA isolated from liver nuclei revealed that hormone treatment of immature White Leghorn roosters resulted in a demethylation of these sites, which occurred initially in only one DNA strand. This demethylation correlated well with the induction of vitellogenin mRNA synthesis. The demethylation of the complementary DNA strand lagged approximately equal to 24 hr behind. The fourth CpG, located within an overlapping glucocorticoid-receptor binding site, was already hemimethylated at the onset of the experiment. The demethylation of this site also occurred with kinetics similar to the rate of vitellogenin mRNA synthesis. All four CpGs remained demethylated even after cessation of gene transcription. A comparison of the methylation state of these four sites in DNA from different tissues demonstrated a clear dependence of the demethylation on estradiol. Our results suggest that this hormone-dependent event occurs via an active pathway through excision repair and/or enzymatic demethylation.
机译:基因组测序用于研究雌二醇诱导的禽卵黄蛋白原II基因调控区域内四个CpG位点的胞嘧啶甲基化程度。这些位点中的三个,其中两个位于雌二醇-受体结合位点内,一小段交替的嘌呤和嘧啶交替出现,最初被完全甲基化。对从肝细胞核中分离的DNA的分析表明,激素处理未成熟的白来亨鸡的雄性会导致这些位点脱甲基,这种位点最初仅出现在一条DNA链中。这种去甲基化与卵黄蛋白原mRNA合成的诱导很好地相关。互补DNA链的脱甲基滞后约等于24小时。位于重叠糖皮质激素-受体结合位点内的第四个CpG在实验开始时已被半甲基化。该位点的去甲基化也以类似于卵黄蛋白原mRNA合成速率的动力学发生。即使在基因转录停止后,所有四个CpG仍保持去甲基化。来自不同组织的DNA中这四个位点的甲基化状态的比较表明,脱甲基化对雌二醇的明显依赖性。我们的结果表明,这种激素依赖性事件是通过切除修复和/或酶促去甲基化的主动途径发生的。

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