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体内谷氨酸受体组成的活性依赖性位点特异性变化。

Activity-dependent site-specific changes of glutamate receptor composition in vivo.

作者信息

Schmid Andreas, Hallermann Stefan, Kittel Robert J, Khorramshahi Omid, Frölich Andreas M J, Quentin Christine, Rasse Tobias M, Mertel Sara, Heckmann Manfred, Sigrist Stephan J

机构信息

Institute for Clinical Neurobiology, Medical Faculty, University of Würzburg, Zinklesweg 10, 97080 Würzburg, Germany.

出版信息

Nat Neurosci. 2008 Jun;11(6):659-66. doi: 10.1038/nn.2122. Epub 2008 May 11.

Abstract

The subunit composition of postsynaptic non-NMDA-type glutamate receptors (GluRs) determines the function and trafficking of the receptor. Changes in GluR composition have been implicated in the homeostasis of neuronal excitability and synaptic plasticity underlying learning. Here, we imaged GluRs in vivo during the formation of new postsynaptic densities (PSDs) at Drosophila neuromuscular junctions coexpressing GluRIIA and GluRIIB subunits. GluR composition was independently regulated at directly neighboring PSDs on a submicron scale. Immature PSDs typically had large amounts of GluRIIA and small amounts of GluRIIB. During subsequent PSD maturation, however, the GluRIIA/GluRIIB composition changed and became more balanced. Reducing presynaptic glutamate release increased GluRIIA, but decreased GluRIIB incorporation. Moreover, the maturation of GluR composition correlated in a site-specific manner with the level of Bruchpilot, an active zone protein that is essential for mature glutamate release. Thus, we show that an activity-dependent, site-specific control of GluR composition can contribute to match pre- and postsynaptic assembly.

摘要

突触后非NMDA型谷氨酸受体(GluRs)的亚基组成决定了该受体的功能和转运。GluR组成的变化与学习过程中神经元兴奋性和突触可塑性的稳态有关。在此,我们在共表达GluRIIA和GluRIIB亚基的果蝇神经肌肉接头处新突触后致密物(PSD)形成过程中对体内的GluRs进行成像。在亚微米尺度上,直接相邻的PSD处的GluR组成受到独立调节。未成熟的PSD通常含有大量的GluRIIA和少量的GluRIIB。然而,在随后的PSD成熟过程中,GluRIIA/GluRIIB组成发生变化并变得更加平衡。减少突触前谷氨酸释放会增加GluRIIA,但会减少GluRIIB的掺入。此外,GluR组成的成熟以位点特异性方式与Bruchpilot的水平相关,Bruchpilot是一种对成熟谷氨酸释放至关重要的活性区蛋白。因此,我们表明对GluR组成的活性依赖性、位点特异性控制有助于匹配突触前和突触后的组装。

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