首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Developmental profile of the changing properties of NMDA receptors at cerebellar mossy fiber-granule cell synapses.
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Developmental profile of the changing properties of NMDA receptors at cerebellar mossy fiber-granule cell synapses.

机译:小脑长满苔藓的纤维-颗粒细胞突触NMDA受体的变化特性的发展概况。

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摘要

During cerebellar development, granule cells display well characterized changes in the expression of NMDA receptor (NMDAR) NR2 subunits, switching from NR2B to NR2A and NR2C in mature cells. Although various studies, including experiments on mutant mice with one or more NR2 subunit types deleted, suggest that NR2A, NR2B, and NR2C subunits contribute to synaptic NMDARs, changes in the properties of the mossy fiber EPSC during development have not been fully evaluated. In particular, information on NMDAR EPSCs in mature animals is lacking. We have examined pharmacological and kinetic properties of NMDARs at mossy fiber-granule cell synapses from their formation to maturity [postnatal day 7 (P7)-P40 rats]. Significant changes were seen in the relative amplitudes of the non-NMDAR- and NMDAR-mediated components of the evoked EPSC and in the decay kinetics of the latter. The NMDAon-NMDA ratio was similar at P7, P21, and P40, but showed a clear peak at P12. This change coincided with a speeding of the NMDAR EPSC decay, accompanied by a decrease in sensitivity to ifenprodil (selective NR2B-antagonist). By P21, sensitivity of the NMDAR EPSC to Mg(2+) was approximately threefold less than that at P12 (IC(50), 76 vs 28 &mgr;m), suggesting incorporation of the NR2C subunit. However, the predicted slowing of decay kinetics to a value more characteristic of NR2C deactivation, was not seen until P40. Our data are consistent with the known switch from NR2B to NR2A subunits during the first two postnatal weeks, but suggest a gradual incorporation of the NR2C subunit that modifies Mg(2+) sensitivity and only later influences EPSC kinetics.
机译:在小脑发育过程中,颗粒细胞在NMDA受体(NMDAR)NR2亚基的表达中表现出特征良好的变化,在成熟细胞中从NR2B切换到NR2A和NR2C。尽管各种研究(包括对具有一种或多种NR2亚基类型缺失的突变小鼠的实验)表明NR2A,NR2B和NR2C亚基有助于突触NMDAR,但尚未完全评估生苔纤维EPSC在发育过程中的性质变化。特别是,缺乏有关成熟动物中NMDAR EPSC的信息。我们已经检查了从苔藓纤维-颗粒细胞突触形成到成熟[产后第7天(P7)-P40大鼠]时NMDAR的药理和动力学特性。在诱发的EPSC的非NMDAR介导的和NMDAR介导的组分的相对振幅以及后者的衰减动力学中观察到了显着变化。在P7,P21和P40处,NMDA /非NMDA比值相似,但在P12处显示出清晰的峰值。这种变化与NMDAR EPSC衰减的加速相吻合,同时伴随着对艾芬地尔(选择性NR2B拮抗剂)的敏感性降低。通过P21,NMDAR EPSC对Mg(2+)的敏感性比在P12处的敏感性低大约三倍(IC(50),分别为76 vs 28μm),这表明已掺入NR2C亚基。但是,直到P40才能看到预计的衰减动力学减慢至更具有NR2C失活特征的值。我们的数据与出生后前两个星期内从NR2B亚单位转换为NR2A亚单位的已知变化一致,但表明NR2C亚单位的逐渐掺入会修饰Mg(2+)敏感性,并且仅在以后影响EPSC动力学。

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