首页> 外文期刊>Stress: the international journal on the biology of stress >Hypothalamic-pituitary-adrenal axis dysregulation and behavioral analysis of mouse mutants with altered glucocorticoid or mineralocorticoid receptor function.
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Hypothalamic-pituitary-adrenal axis dysregulation and behavioral analysis of mouse mutants with altered glucocorticoid or mineralocorticoid receptor function.

机译:下丘脑-垂体-肾上腺轴失调和糖皮质激素或盐皮质激素受体功能改变的小鼠突变体的行为分析。

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摘要

Corticosteroid receptors are critical for the maintenance of homeostasis after both psychological and physiological stress. To understand the different roles and interactions of the glucocorticoid receptor (GR) and mineralocorticoid receptor (MR) during stress, it is necessary to dissect the role of corticosteroid signaling at both the system and sub-system level. A variety of GR transgenic mouse lines have recently been used to characterize the role of GR in the CNS as a whole and particularly in the forebrain. We will describe both the behavioral and cellular/molecular implications of disrupting GR function in these animal models and describe the implications of this data for our understanding of normal endocrine function and stress adaptation. MRs in tight epithelia have a long established role in sodium homeostasis. Recently however, evidence has suggested that MRs in the limbic brain also play an important role in psychological stress. Just as with GR, targeted mutations in MR induce a variety of behavioral changes associated with stress adaptation. In this review, we will discuss the implications of this work on MR. Finally, we will discuss the possible interaction between MR and GR and how future work using double mutants (through conventional means or virus based gene alteration) will be needed to more fully understand how signaling through these two steroid receptors provides the adaptive mechanisms to deal with a variety of stressors.
机译:皮质类固醇受体对于心理和生理压力后维持体内稳态至关重要。要了解应激期间糖皮质激素受体(GR)和盐皮质激素受体(MR)的不同作用和相互作用,有必要在系统和子系统水平上剖析皮质类固醇信号传导的作用。最近已使用多种GR转基因小鼠品系来表征GR在整个CNS中,特别是在前脑中的作用。我们将在这些动物模型中描述破坏GR功能的行为和细胞/分子含义,并描述该数据的含义,以帮助我们了解正常的内分泌功能和压力适应性。紧密上皮中的MR在钠稳态中具有长期的作用。然而,最近有证据表明,边缘大脑中的MR在心理压力中也起着重要作用。与GR一样,MR中的定向突变会引起与压力适应相关的多种行为变化。在这篇评论中,我们将讨论这项工作对MR的影响。最后,我们将讨论MR和GR之间的可能相互作用,以及将来需要如何使用双突变体(通过常规手段或基于病毒的基因改变)来工作,以更充分地了解通过这两种类固醇受体的信号传导如何提供适应性机制来应对各种各样的压力源。

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