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超昼夜糖皮质激素受体作用的分子动力学。

Molecular dynamics of ultradian glucocorticoid receptor action.

机构信息

Henry Wellcome Laboratories for Integrative Neuroscience and Endocrinology, University of Bristol, Bristol BS1 3NY, UK.

出版信息

Mol Cell Endocrinol. 2012 Jan 30;348(2):383-93. doi: 10.1016/j.mce.2011.08.014. Epub 2011 Aug 22.

Abstract

In recent years it has become evident that glucocorticoid receptor (GR) action in the nucleus is highly dynamic, characterized by a rapid exchange at the chromatin template. This stochastic mode of GR action couples perfectly with a deterministic pulsatile availability of endogenous ligand in vivo. The endogenous glucocorticoid hormone (cortisol in man and corticosterone in rodent) is secreted from the adrenal gland with an ultradian rhythm made up of pulses at approximately hourly intervals. These two components - the rapidly fluctuating ligand and the rapidly exchanging receptor - appear to have evolved to establish and maintain a system that is exquisitely responsive to the physiological demands of the organism. In this review, we discuss recent and innovative work that questions the idea of steady state, static hormone receptor responses, and replaces them with new concepts of stochastic mechanisms and oscillatory activity essential for optimal function in molecular and cellular systems.

摘要

近年来,糖皮质激素受体 (GR) 在核内的作用具有高度动态性,其特征是在染色质模板上快速交换。这种随机的 GR 作用模式与体内内源性配体的确定性脉冲式可用性完美结合。内源性糖皮质激素激素(人类的皮质醇和啮齿动物的皮质酮)从肾上腺分泌,具有大约每小时间隔一次的脉冲组成的超昼夜节律。这两个组成部分——快速波动的配体和快速交换的受体——似乎已经进化到建立和维持一个对生物体的生理需求极其敏感的系统。在这篇综述中,我们讨论了最近的创新工作,这些工作对稳态和静态激素受体反应的概念提出了质疑,并以随机机制和振荡活动的新概念取而代之,这些新概念对于分子和细胞系统的最佳功能至关重要。

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