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首页> 外文期刊>Neurobiology of Aging: Experimental and Clinical Research >Epigenetic regulation of estrogen receptor alpha contributes to age-related differences in transcription across the hippocampal regions CA1 and CA3
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Epigenetic regulation of estrogen receptor alpha contributes to age-related differences in transcription across the hippocampal regions CA1 and CA3

机译:雌激素受体α的表观遗传调节有助于在海马区域CA1和CA3中转录的年龄相关差异

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The expression of estrogen receptor alpha (ER alpha) varies across brain regions and changes with age and according to the previous history of estradiol exposure. ERa is regulated by a number of mechanisms including the level of mRNA (Esr1) expression. For this study, we took advantage of regional differences in hippocampal ERa expression to investigate DNA ERa promoter methylation at CpG dinucleotide sites as a potential epigenetic mechanism for regulating gene expression. Young and aged female Fischer 344 rats were ovariectomized, and Esr1 expression and ERa promoter methylation were examined in hippocampal regions CA1 and CA3, either 3 or 14 weeks following surgery. The results indicate that reduced Esr1 expression in region CA1 relative to CA3 was associated with an increase in DNA methylation in region CA1, particularly for the first CpG site. Additionally, differential methylation of distal CpG sites, 11-17, was associated with altered Esr1 expression during aging or following long-term hormone deprivation. The results support the idea that methylation of site 1 may be the primary regulatory region for cross-regional patterns in ERa expression, while distal sites are modifiable across the life span and may act as a feedback mechanism for ERa activity. (C) 2016 Elsevier Inc. All rights reserved.
机译:雌激素受体α(ERα)的表达在脑区中变化,随着年龄的变化,并且根据前一个雌二醇暴露的历史。 ERA受许多机制调节,包括mRNA(ESR1)表达的水平。对于这项研究,我们利用海马时代表达的区域差异,以研究CpG二核苷酸位点的DNA ERA启动子甲基化作为用于调节基因表达的潜在表观遗传机制。年轻和老年的雌性费舍344大鼠卵巢切除术,在手术后3或14周,在海马区域CA1和CA3中检查ESR1表达和ERA启动子甲基化。结果表明,相对于Ca3的区域Ca1中的减少的ESR1表达与区域Ca1中的DNA甲基化的增加有关,特别是对于第一个CPG位点。另外,远端CpG位点11-17的差分甲基化与老化期间或长期激素剥夺期间的ESR1表达改变。结果支持观点,即部位1的甲基化可以是时代表达中的跨区域模式的主要调节区,而远端位点在寿命中可修改,并且可以作为ERA活动的反馈机制。 (c)2016年Elsevier Inc.保留所有权利。

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