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Functional profile of the binary brain corticosteroid receptor system: Mediating, multitasking, coordinating, integrating

机译:二元大脑皮质类固醇受体系统的功能概况:介导,多任务,协调,整合

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This contribution is focused on the action of the naturally occurring corticosteroids, cortisol and corticosterone, which are secreted from the adrenals in hourly pulses and after stress with the goal to maintain resilience and health. To achieve this goal the action of the corticosteroids displays an impressive diversity, because it is cell-specific and context-dependent in coordinating the individual's response to changing environments. These diverse actions of corticosterone are mediated by mineralocorticoid- and glucocorticoid-receptors that operate as a binary system in concert with neurotransmitter and neuropeptide signals to activate and inhibit stress reactions, respectively. Classically MR and GR are gene transcription factors, but recently these receptors appear to mediate also rapid non-genomic actions on excitatory neurotransmission suggesting that they integrate functions over time. Hence the balance of receptor-mediated actions is crucial for homeostasis. This balanced function of mineralo- and glucocorticoid-receptors can be altered epigenetically by a history of traumatic (early) life events and the experience of repeated stressors as well as by predisposing genetic variants in signaling pathways of these receptors. One of these variants, mineralocorticoid receptor haplotype 2, is associated with dispositional optimism in appraisal of environmental challenges. Imbalance in receptor-mediated corticosterone actions was found to leave a genomic signature highlighting the role of master switches such as cAMP response element-binding protein and mammalian target of rapamycin to compromise health, and to promote vulnerability to disease. Diabetic encephalopathy is a pathology of imbalanced corticosterone action, which can be corrected in its pre-stage by a brief treatment with the antiglucocorticoid mifepristone.
机译:这种贡献集中在天然存在的皮质类固醇,皮质醇和皮质酮的作用上,它们是每小时一次从肾上腺分泌出来的,在受到压力后,目的是保持弹性和健康。为了实现这个目标,皮质类固醇的作用表现出令人印象深刻的多样性,因为它在协调个人对变化的环境的响应时是特定于细胞的并且取决于上下文。皮质类固醇激素和糖皮质激素受体介导皮质酮的这些不同作用,它们分别作为二元系统与神经递质和神经肽信号协同激活和抑制应激反应。传统上,MR和GR是基因转录因子,但是最近,这些受体似乎也介导了对兴奋性神经传递的快速非基因组作用,表明它们随着时间的推移整合了功能。因此,受体介导的动作平衡对于体内平衡至关重要。矿物质和糖皮质激素受体的这种平衡功能可以通过创伤(早期)生活史和反复应激源的经历以及通过在这些受体的信号通路中诱发遗传变异而在表观遗传上改变。这些变体之一,盐皮质激素受体单倍型2与评估环境挑战的性格乐观相关。发现受体介导的皮质酮作用的不平衡留下了基因组特征,突出了诸如cAMP反应元件结合蛋白和雷帕霉素的哺乳动物靶标之类的主开关对损害健康并促进疾病易感性的作用。糖尿病性脑病是皮质类固醇作用失衡的一种病理,可以​​在早期通过短暂用抗糖皮质激素米非司酮治疗来纠正。

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