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首页> 外文期刊>The Journal of Physiology >Diverse roles for ionotropic glutamate receptors on inhibitory interneurons in developing and adult brain
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Diverse roles for ionotropic glutamate receptors on inhibitory interneurons in developing and adult brain

机译:离子型谷氨酸受体对发育中和成年大脑中抑制性中间神经元的不同作用

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Glutamate receptor-mediated recruitment of GABAergic inhibitory interneurons is a critical determinant of network processing. Early studies observed that many, but not all, interneuron glutamatergic synapses contain AMPA receptors that are GluA2-subunit lacking and Ca2+ permeable, making them distinct from AMPA receptors at most principal cell synapses. Subsequent studies demonstrated considerable alignment of synaptic AMPA and NMDA receptor subunit composition within specific subtypes of interneurons, suggesting that both receptor expression profiles are developmentally and functionally linked. Indeed glutamate receptor expression profiles are largely predicted by the embryonic origins of cortical interneurons within the medial and caudal ganglionic eminences of the developing telencephalon. Distinct complements of AMPA and NMDA receptors within different interneuron subpopulations contribute to the differential recruitment of functionally divergent interneuron subtypes by common afferent inputs for appropriate feed-forward and feedback inhibitory drive and network entrainment. In contrast, the lesser-studied kainate receptors, which are often present at both pre- and postsynaptic sites, appear to follow an independent developmental expression profile. Loss of specific ionotropic glutamate receptor (iGluR) subunits during interneuron development has dramatic consequences for both cellular and network function, often precipitating circuit inhibition-excitation imbalances and in some cases lethality. Here we briefly review recent findings highlighting the roles of iGluRs in interneuron development.
机译:谷氨酸受体介导的GABA能抑制性中间神经元的募集是网络加工的关键决定因素。早期研究发现,许多神经元谷氨酸能突触包含但不全部缺少GluA2亚基且Ca2 +可渗透的AMPA受体,从而使它们在大多数主要细胞突触中均不同于AMPA受体。随后的研究表明突触AMPA和NMDA受体亚基组成在中间神经元的特定亚型中有相当大的比对,表明这两种受体的表达谱在发育和功能上都有联系。确实,谷氨酸受体的表达谱很大程度上是由发育中的端脑的内侧和尾神经节突起内的皮质中间神经元的胚胎起源预测的。在不同的中间神经元亚群中,AMPA和NMDA受体的互补性不同,通过适当的前馈和反馈抑制驱动和网络夹带的共同传入输入,导致功能不同的中间神经元亚型的差异募集。相反,通常在突触前和突触后位点都存在的研究较少的海藻酸酯受体似乎遵循独立的发育表达谱。在中间神经元发育过程中特定离子型谷氨酸受体(iGluR)亚基的丧失对细胞和网络功能均具有重大影响,通常会加剧电路抑制-激发失衡,并在某些情况下导致致死性。在这里,我们简要回顾一下最近的发现,突出了iGluR在中间神经元发育中的作用。

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