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Cooperativity and complementarity

机译:合作与互补

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摘要

Glucocorticoids (GCs) are an ubiquitous class of steroid hormones that exert a wide array of physiological effects. Traditionally, GC action has been considered to primarily involve transcriptional effects following the binding of hormone to the glucocorticoid receptor (GR) and subsequent activation or repression of target genes. However, a number of findings suggest that cellular responses following GC exposure may be mediated by transcription-independent, or “non-classical,” mechanisms. We have added to this growing body of work by recently uncovering a novel GC signaling pathway that operates through plasma membrane GRs to limit gap junction intercellular signaling and limit the proliferation of neural progenitor cells (NPCs). In this review, we highlight our current state of knowledge of non-classical GR signaling, in particular as it applies to neuronal function. Using NPCs as a cellular model, we speculate on the components of this non-classical pathway and the mechanisms whereby a number of cytoplasmic and nuclear signaling events may be integrated.
机译:糖皮质激素(GCs)是一类普遍存在的类固醇激素,可发挥多种生理作用。传统上,人们认为GC作用主要涉及激素与糖皮质激素受体(GR)结合后,随后激活或抑制靶基因后的转录作用。但是,许多发现表明,GC暴露后的细胞反应可能是由转录非依赖性或“非经典”机制介导的。最近,我们发现了一条新的GC信号通路,该信号通过质膜GR起作用,以限制间隙连接细胞间信号传导并限制神经祖细胞(NPC)的增殖,从而增加了这一不断发展的工作。在这篇综述中,我们着重介绍了我们当前对非经典GR信号的了解,特别是因为它适用于神经元功能。使用NPC作为细胞模型,我们推测了这种非经典途径的组成部分以及可能整合了许多细胞质和核信号事件的机制。

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