Activation of glutamate receptors has been linked to a diversity of lasting physiologic and pathologic changes in the mammalian nervous system. The cellular and molecular mechanisms underlying permanent modifications of nervous system structure and function following brief episodes of neuronal activity are unknown. Immediate early genes (IEGs) have been implicated in the conversion of short-term stimuli to long-term changes in cellular phenotype by regulation of gene expression. Many of the long-term consequences of glutamate receptor activation correlate with increases in specific IEGs; the intracellular signalling pathways coupling activation of receptors at the cell surface with induction of IEGs in the nucleus are incompletely understood. Analysis of mechanisms of how extracellular factors control gene expression implicate activation of second messenger systems and protein kinases. Activation of glutamate receptors results in an initial increase in intracellular calcium; the route of calcium influx may differ depending on the specific receptor subtype activated. Intracellular calcium is often the first messenger in response to an extracellular stimulus and can be the trigger for activating numerous other signalling pathways. Results obtained over the past several years support a hypothesis where selective activation of distinct intracellular signalling pathways and IEG responses, following activation of different glutamate receptor subtypes, involve spatial restriction of key enzymes to sites of local calcium increases. The specificity in long-term neuronal responses following brief synaptic activation may depend on the specific intracellular signalling mechanisms triggered and the unique array of IEGs transcribed.

译文

谷氨酸受体的激活与哺乳动物神经系统中持久的生理和病理变化的多样性有关。短暂的神经元活动后,神经系统结构和功能永久改变的细胞和分子机制尚不清楚。通过基因表达的调节,即刻早期基因 (IEGs) 与短期刺激转化为细胞表型的长期变化有关。谷氨酸受体激活的许多长期后果与特定IEGs的增加有关; 细胞表面受体激活与细胞核IEGs诱导耦合的细胞内信号传导途径尚不完全了解。分析细胞外因子如何控制基因表达的机制暗示第二信使系统和蛋白激酶的激活。谷氨酸受体的激活导致细胞内钙的初始增加; 钙流入的途径可能因激活的特定受体亚型而异。细胞内钙通常是响应细胞外刺激的第一信使,并且可能是激活许多其他信号通路的触发因素。在过去几年中获得的结果支持了一个假设,即不同的谷氨酸受体亚型激活后,选择性激活不同的细胞内信号传导途径和IEG反应涉及关键酶对局部钙位点的空间限制增加。短暂突触激活后长期神经元反应的特异性可能取决于触发的特定细胞内信号传导机制和转录的独特IEGs阵列。

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