首页> 外文期刊>The Journal of Physiology >Contrary roles of kainate receptors in transmitter release at corticothalamic synapses onto thalamic relay and reticular neurons.
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Contrary roles of kainate receptors in transmitter release at corticothalamic synapses onto thalamic relay and reticular neurons.

机译:海藻酸酯受体在皮质丘脑突触释放到丘脑中继和网状神经元的递质释放中的相反作用。

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Corticothalamic fibres, which originate from layer VI pyramidal neurons in the cerebral cortex, provide excitatory synaptic inputs to both thalamic relay neurons and reticular neurons; reticular neurons in turn supply inhibitory inputs to thalamic relay neurons. Pyramidal cells in layer VI in the mouse somatosensory cortex highly express mRNA encoding kainate receptors, which facilitate or depress transmitter release at several synapses in the central nervous system. We report here that contrary modulation of transmitter release from corticothalamic fibres onto thalamic relay and reticular neurons is mediated by activation of kainate receptors in mouse thalamic ventrobasal complex and thalamic reticular nucleus. Exogenous kainate presynaptically depresses the synaptic transmission at corticothalamic synapses onto thalamic relay neurons, but facilitates it at corticothalamic synapses onto reticular neurons. Meanwhile, the lemniscal synaptic transmission, which sends primary somatosensory inputs to relayneurons, is not affected by kainate. In addition, GluR5-containing kainate receptors are involved in the depression of corticothalamic synaptic transmission onto relay neurons, but not onto reticular neurons. Furthermore, synaptically activated kainate receptors mimic these effects; high-frequency stimulation of corticothalamic fibres depresses synaptic transmission onto relay neurons, but facilitates it onto reticular neurons. Our results suggest that the opposite sensitivity of kainate receptors at the two corticothalamic synapses is governed by cortical activity and regulates the balance of excitatory and inhibitory inputs to thalamic relay neurons and therefore their excitability.
机译:源自大脑皮质第六层锥体神经元的皮质丘脑纤维为丘脑中继神经元和网状神经元提供兴奋性突触输入。网状神经元又向丘脑中继神经元提供抑制性输入。小鼠体感皮层VI层中的金字塔形细胞高度表达编码海藻酸盐受体的mRNA,这促进或抑制中枢神经系统中多个突触处的递质释放。我们在这里报告,相反的调制器释放从皮质丘脑纤维到丘脑中继和网状神经元的释放是由激活小鼠丘脑腹膜复合体和丘脑网状核中的海藻酸盐受体介导的。外源性海藻酸盐突触地抑制皮层丘脑突触到丘脑中继神经元的突触传递,但促进其在皮层丘脑突触到网状神经元的传递。同时,将初级体感输入发送到中继神经元的双生突触传递不受红藻氨酸的影响。此外,含有GluR5的海藻酸酯受体参与了皮质丘脑突触传递到中继神经元而不是网状神经元上的抑制。此外,突触激活的海藻酸盐受体模拟这些作用。高频刺激皮层皮质纤维抑制突触传递到中继神经元,但促进其传递到网状神经元。我们的结果表明,在两个皮层丘脑突触中,海藻酸盐受体的相反敏感性受皮层活动支配,并调节丘脑中继神经元的兴奋性和抑制性输入的平衡,从而调节它们的兴奋性。

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