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首页> 外文期刊>Frontiers in neuroendocrinology >Importance of the brain corticosteroid receptor balance in metaplasticity, cognitive performance and neuro-inflammation
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Importance of the brain corticosteroid receptor balance in metaplasticity, cognitive performance and neuro-inflammation

机译:大脑皮质类固醇受体平衡在术塑性,认知性能和神经炎症中的重要性

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摘要

Bruce McEwen's discovery of receptors for corticosterone in the rat hippocampus introduced higher brain circuits in the neuroendocrinology of stress. Subsequently, these receptors were identified as mineralocorticoid receptors (MRs) that are involved in appraisal processes, choice of coping style, encoding and retrieval. The MR-mediated actions on cognition are complemented by slower actions via glucocorticoid receptors (GRs) on contextualization, rationalization and memory storage of the experience. These sequential phases in cognitive performance depend on synaptic metaplasticity that is regulated by coordinate MR- and GR activation. The receptor activation includes recruitment of coregulators and transcription factors as determinants of context dependent specificity in steroid action; they can be modulated by genetic variation and (early) experience. Interestingly, inflammatory responses to damage seem to be governed by a similarly balanced MR:GR-mediated action as the initiating, terminating and priming mechanisms involved in stress-adaptation. We conclude with five questions challenging the MR:GR balance hypothesis.
机译:Bruce Mcewen在大鼠海马中皮质酮的受体发现引入了压力神经内分泌内容的更高的脑电路。随后,将这些受体鉴定为参与评估过程,选择应对方式,编码和检索的ineralocorcoid受体(MRS)。 MR-MR-MROGAING关于认知的行动通过糖皮质激素受体(GRS)对体内化,合理化和内存存储的糖皮质激素受体(GRS)互动。认知性能中的这些连续相位取决于通过协调MR-and GR激活调节的突触沟塑性。受体激活包括作为类固醇作用中的语境依赖性特异性的决定因素的核心剂和转录因子的募集;它们可以通过遗传变异和(早期)经验来调节。有趣的是,对损害的炎症反应似乎受到类似平衡的MR:GR介导的行动的管辖,作为引发,终止和引发压力适应的机制。我们结束了五个问题,挑战MR:GR平衡假说。

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