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首页> 外文期刊>Molecular neuropsychiatry. >Perturbations of Neuron-Restrictive Silencing Factor Modulate Corticotropin-Releasing Hormone Gene Expression in the Human Cell Line BeWo
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Perturbations of Neuron-Restrictive Silencing Factor Modulate Corticotropin-Releasing Hormone Gene Expression in the Human Cell Line BeWo

机译:扰动的Neuron-Restrictive沉默促肾上腺皮质激素释放激素因素调节基因表达在人类细胞系BeWo

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摘要

Stress exacerbates disease, and understanding its molecular mechanisms is crucial to the development of novel therapeutic interventions to combat stress-related disorders. The driver of the stress response in the hypothalamic-pituitary-adrenal axis (HPA) is corticotropin-releasing hormone (CRH), a neuropeptide synthesized in the paraventricular nucleus of the hypothalamus. Evidence supports that CRH expression is epigenetically modified at the molecular level by environmental stimuli, causing changes in the stress response. This effect is mediated by a concert of factors that translate environmental change into alterations in gene expression. An important regulator and epigenetic modulator of CRH expression is neuron-restrictive silencing factor (NRSF). Previously, our lab identified numerous splice variants of NRSF that are specific to humans and predictive of differential regulatory effects of NRSF variants on targeted gene expression. The human cell line BeWo has endogenous CRH and NRSF expression providing an in vitro model system. Here, we show that manipulation of NRSF expression through siRNA technology, overexpression by plasmid vectors, and direct cAMP induction that CRH expression is linked to changes in NRSF expression. Accordingly, this epigenetic regulatory pathway in humans might be a critical mechanism involved in the regulation of the stress response.
机译:压力会加剧疾病,和理解它分子机制是至关重要的开发新型治疗干预措施与压力相关的疾病作斗争。的压力反应-肾上腺轴(HPA)促肾上腺皮质激素的释放激素(CRH)神经肽合成室旁下丘脑核。CRH表情epigenetically修改分子水平上通过环境刺激,导致压力反应的变化。影响的因素是由一种音乐会环境变化转化为改变在基因表达。表观遗传调制器CRH表达式neuron-restrictive沉默因素(NRSF)。以前,我们实验室发现了众多的拼接特定于人类和NRSF的变体预测微分监管的影响NRSF变体在目标基因的表达。人类细胞系BeWo内生CRH和NRSF体外表达提供了一个模型系统。在这里,我们表明,NRSF的操纵表达小干扰rna技术通过,超表达质粒载体,直接阵营感应,CRH表达有关NRSF表达的变化。表观遗传监管途径在人类一个关键机制参与监管的压力反应。

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