首页> 美国卫生研究院文献>The Journal of Neuroscience >Neto Auxiliary Protein Interactions Regulate Kainate and NMDA Receptor Subunit Localization at Mossy Fiber–CA3 Pyramidal Cell Synapses
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Neto Auxiliary Protein Interactions Regulate Kainate and NMDA Receptor Subunit Localization at Mossy Fiber–CA3 Pyramidal Cell Synapses

机译:内托辅助蛋白相互作用调节苔藓纤维–CA3金字塔形细胞突触中的海藻酸盐和NMDA受体亚基的定位。

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摘要

Neto1 and Neto2 auxiliary subunits coassemble with NMDA receptors (NMDARs) and kainate receptors (KARs) to modulate their function. In the hippocampus, Neto1 enhances the amplitude and prolongs the kinetics of KAR-mediated currents at mossy fiber (MF)–CA3 pyramidal cell synapses. However, whether Neto1 trafficks KARs to synapses or simply alters channel properties is unresolved. Therefore, postembedding electron microscopy was performed to investigate the localization of GluK2/3 subunits at MF–CA3 synapses in Neto-null mice. Postsynaptic GluK2/3 Immunogold labeling was substantially reduced in Neto-null mice compared with wild types. Moreover, spontaneous KAR-mediated synaptic currents and metabotropic KAR signaling were absent in CA3 pyramidal cells of Neto-null mice. A similar loss of ionotropic and metabotropic KAR function was observed in Neto1, but not Neto2, single knock-out mice, specifically implicating Neto1 in regulating CA3 pyramidal cell KAR localization and function. Additional controversy pertains to the role of Neto proteins in modulating synaptic NMDARs. While Immunogold labeling for GluN2A at MF–CA3 synapses was comparable between wild-type and Neto-null mice, labeling for postsynaptic GluN2B was robustly increased in Neto-null mice. Accordingly, NMDAR-mediated currents at MF–CA3 synapses exhibited increased sensitivity to a GluN2B-selective antagonist in Neto1 knockouts relative to wild types. Thus, despite preservation of the overall MF–CA3 synaptic NMDAR-mediated current, loss of Neto1 alters NMDAR subunit composition. These results confirm that Neto protein interactions regulate synaptic localization of KAR and NMDAR subunits at MF–CA3 synapses, with implications for both ionotropic and metabotropic glutamatergic recruitment of the CA3 network.
机译:Neto1和Neto2辅助亚基与NMDA受体(NMDARs)和海藻酸盐受体(KARs)共同装配以调节其功能。在海马中,Neto1增强了振幅,并延长了苔藓纤维(MF)–CA3锥体细胞突触处KAR介导的电流的动力学。但是,尚未解决Neto1是将KAR投放到突触还是仅更改通道属性。因此,使用嵌入后电子显微镜技术研究了Neto-null小鼠中MF-CA3突触处GluK2 / 3亚基的定位。与野生型相比,Neto-null小鼠的突触后GluK2 / 3免疫金标记显着减少。而且,Neto-null小鼠的CA3锥体细胞中不存在自发的KAR介导的突触电流和代谢型KAR信号传导。在Neto1(单只敲除小鼠)中观察到了类似的离子型和代谢型KAR功能丧失,特别是Neto1参与调节CA3锥体细胞KAR的定位和功能。其他争议涉及Neto蛋白在调节突触NMDAR中的作用。虽然在野生型和Neto-null小鼠中MF-CA3突触处的GluN2A免疫金标记具有可比性,但在Neto-null小鼠中突触后GluN2B的标记强烈增加。因此,相对于野生型,在Neto1基因敲除中,MF-CA3突触处NMDAR介导的电流表现出对GluN2B选择性拮抗剂的敏感性增加。因此,尽管保留了整个MF-CA3突触NMDAR介导的电流,但Neto1的缺失改变了NMDAR亚基的组成。这些结果证实,Neto蛋白相互作用调节MF-CA3突触中KAR和NMDAR亚基的突触定位,这对CA3网络的离子型和代谢型谷氨酸能募集都有影响。

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