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超日节律激素刺激诱导糖皮质激素受体介导的基因转录脉冲。

Ultradian hormone stimulation induces glucocorticoid receptor-mediated pulses of gene transcription.

作者信息

Stavreva Diana A, Wiench Malgorzata, John Sam, Conway-Campbell Becky L, McKenna Mervyn A, Pooley John R, Johnson Thomas A, Voss Ty C, Lightman Stafford L, Hager Gordon L

机构信息

Laboratory of Receptor Biology and Gene Expression, Center for Cancer Research, National Cancer Institute, NIH, Bethesda, MD 20892-5055, USA.

出版信息

Nat Cell Biol. 2009 Sep;11(9):1093-102. doi: 10.1038/ncb1922. Epub 2009 Aug 16.

Abstract

Studies on glucocorticoid receptor (GR) action typically assess gene responses by long-term stimulation with synthetic hormones. As corticosteroids are released from adrenal glands in a circadian and high-frequency (ultradian) mode, such treatments may not provide an accurate assessment of physiological hormone action. Here we demonstrate that ultradian hormone stimulation induces cyclic GR-mediated transcriptional regulation, or gene pulsing, both in cultured cells and in animal models. Equilibrium receptor-occupancy of regulatory elements precisely tracks the ligand pulses. Nascent RNA transcripts from GR-regulated genes are released in distinct quanta, demonstrating a profound difference between the transcriptional programs induced by ultradian and constant stimulation. Gene pulsing is driven by rapid GR exchange with response elements and by GR recycling through the chaperone machinery, which promotes GR activation and reactivation in response to the ultradian hormone release, thus coupling promoter activity to the naturally occurring fluctuations in hormone levels. The GR signalling pathway has been optimized for a prompt and timely response to fluctuations in hormone levels, indicating that biologically accurate regulation of gene targets by GR requires an ultradian mode of hormone stimulation.

摘要

关于糖皮质激素受体(GR)作用的研究通常通过用合成激素进行长期刺激来评估基因反应。由于皮质类固醇以昼夜节律和高频(超日节律)模式从肾上腺释放,这种处理可能无法准确评估生理激素作用。在此我们证明,超日节律激素刺激在培养细胞和动物模型中均能诱导循环的GR介导的转录调控,即基因脉冲。调控元件的平衡受体占有率精确跟踪配体脉冲。来自GR调控基因的新生RNA转录本以不同的量释放,这表明超日节律刺激和持续刺激所诱导的转录程序之间存在深刻差异。基因脉冲由GR与反应元件的快速交换以及GR通过伴侣机制的循环驱动,这促进了GR对超日节律激素释放的激活和再激活,从而将启动子活性与激素水平的自然波动联系起来。GR信号通路已针对对激素水平波动的迅速及时反应进行了优化,这表明GR对基因靶标的生物学精确调控需要超日节律模式的激素刺激。

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