首页> 外文期刊>Biochimica et Biophysica Acta. Gene Regulatory Mechanisms >The role of H3K4me3 and H3K9/14ac in the induction by dexamethasone of Per1 and Sgk1, two glucococorticoid early response genes that mediate the effects of acute stress in mammals
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The role of H3K4me3 and H3K9/14ac in the induction by dexamethasone of Per1 and Sgk1, two glucococorticoid early response genes that mediate the effects of acute stress in mammals

机译:H3K4me3和H3K9 / 14ac在地塞米松Per1和Sgk1的诱导中的作用,Per1和Sgk1是两个糖皮质激素早期反应基因,在哺乳动物中介导急性应激的作用

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Glucocorticoids are known to induce or repress the expression of a wide variety of genes with roles in various biological processes such as the circadian clock and the stress response. We studied the changes in the levels of two histone H3 post-translational modifications associated with active chromatin, H3 trimethylated at lysine 4 (H3K4me3) and H3 acetylated at lysines 9/14 (H3K9/14ac), that take place in the promoters of two glucocorticoid early response genes, Per1 and Sgk1, during their induction by the synthetic glucocorticoid, dexamethasone. Sgk1 mediates the effects of acute and chronic stress on the prefrontal cortex and other parts of the brain, while Per1 is a core circadian clock gene whose expression is strongly induced by the increased levels of blood-borne glucocorticoids that accompany acute and chronic stress. Here we show that dexamethasone rapidly increases the levels of H3K4me3 and H3K9/14ac in the promoters of both genes. Furthermore, the effect of dexamethasone on these genes, regarding both mRNA levels and the abundance of H3K4me3 and H3K9/14ac in their promoters, can be inhibited by the presence of nicotinamide, a metabolic molecule which has been shown to possess anxiolytic properties.
机译:已知糖皮质激素诱导或抑制多种基因的表达,这些基因在诸如昼夜节律和应激反应等各种生物过程中起作用。我们研究了与活性染色质相关的两个组蛋白H3翻译后修饰水平的变化,其中H3在赖氨酸4(H3K4me3)三甲基化,H3在赖氨酸9/14(H3K9 / 14ac)乙酰化,这发生在两个启动子上糖皮质激素早期反应基因Per1和Sgk1在合成糖皮质激素地塞米松诱导过程中。 Sgk1介导急性和慢性应激对额叶前额叶皮层和大脑其他部位的影响,而Per1是一个核心昼夜节律时钟基因,其表达受到伴随急性和慢性应激的血中糖皮质激素水平升高的强烈诱导。在这里,我们显示地塞米松在两个基因的启动子中迅速增加了H3K4me3和H3K9 / 14ac的水平。此外,关于烟酸中存在的一种代谢分子烟酰胺可以抑制地塞米松对这些基因的影响,无论是关于mRNA水平还是其启动子中H3K4me3和H3K9 / 14ac的丰度。

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