Laboratory of Applied Nutrition and Metabolism, Physical Education and School of Sports, University of Sao Paulo, Sao Paulo, SP, Brazil.
J Cell Physiol. 2010 Aug;224(2):311-5. doi: 10.1002/jcp.22141.
Glucocorticoid hormones are important regulators of several physiological processes. Despite having been initially named based on their role in glucose metabolism, glucocorticoids are also fundamental in the regulation of developmental, metabolic, and neurobiological processes, as well as several other biological functions. Due to their involvement in a diverse array of biological pathways, its wide spectrum of action, it is predicted that a wide range of genes may have their expression regulated by the activated glucocorticoid receptor (GR). In fact, it has been demonstrated that in addition to the regulation of several effectors genes, the expression of the gene encoding for GR itself is regulated by physiological stimuli and fine-tuning mechanisms. Importantly, such generalized effector responses and fine-tuning responses seem to be largely mediated by mechanisms of gene regulation. Therefore, this review aims to describe the mechanisms of gene regulation by glucocorticoid hormones, which are capable of regulating differential gene transcription, within a physiological context. From this discussion, we hope to shed light on how a single molecule that is capable of exerting such divergent effects is also capable of promoting such distinct responses in different target tissues.
糖皮质激素是几种生理过程的重要调节剂。尽管最初是根据其在葡萄糖代谢中的作用而命名的,但糖皮质激素在发育、代谢和神经生物学过程以及其他几种生物学功能的调节中也起着重要作用。由于其涉及多种生物途径,作用范围广泛,预计许多基因的表达可能受到激活的糖皮质激素受体(GR)的调节。事实上,已经证明,除了调节几个效应基因外,编码 GR 自身的基因的表达也受到生理刺激和微调机制的调节。重要的是,这种普遍的效应器反应和微调反应似乎主要是由基因调控机制介导的。因此,本综述旨在描述糖皮质激素调节基因表达的机制,这种机制能够在生理环境下调节差异基因转录。通过这次讨论,我们希望阐明一种能够产生如此不同作用的单一分子,是如何在不同的靶组织中促进如此不同的反应的。