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Molecular bases of NMDA receptor subtype-dependent properties

机译:NMDA受体亚型依赖性特性的分子碱基

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NMDA receptors (NMDARs) are a class of ionotropic glutamate receptors (iGluRs) that are essential for neuronal development, synaptic plasticity, learning and cell survival. Several features distinguish NMDARs from other iGluRs and underlie the crucial roles NMDARs play in nervous system physiology. NMDARs display slow deactivation kinetics, are highly Ca2+ permeable, and require depolarization to relieve channel block by external Mg2+ ions, thereby making them effective coincidence detectors. These properties and others differ among NMDAR subtypes, which are defined by the subunits that compose the receptor. NMDARs, which are heterotetrameric, commonly are composed of two GluN1 subunits and two GluN2 subunits, of which there are four types, GluN2A-D. Diheteromeric' NMDARs contain two identical GluN2 subunits. Gating and ligand-binding properties (e.g. deactivation kinetics) and channel properties (e.g. channel block by Mg2+) depend strongly on the GluN2 subunit contained in diheteromeric NMDARs. Recent work shows that two distinct regions of GluN2 subunits control most diheteromeric NMDAR subtype-dependent properties: the N-terminal domain is responsible for most subtype dependence of gating and ligand-binding properties; a single residue difference between GluN2 subunits at a site termed the GluN2 S/L site is responsible for most subtype dependence of channel properties. Thus, two structurally and functionally distinct regions underlie the majority of subtype dependence of NMDAR properties. This topical review highlights recent studies of recombinant diheteromeric NMDARs that uncovered the involvement of the N-terminal domain and of the GluN2 S/L site in the subtype dependence of NMDAR properties.
机译:NMDA受体(NMDARS)是一类离子型谷氨酸受体(IGLURS)对于神经元发育,突触塑性,学习和细胞存活至关重要。几个特征区分NMDAR与其他IGLURS,并利于NMDARS在神经系统生理学中的关键作用。 NMDARS显示缓慢停用动力学,高度CA2 +可渗透,并且需要去极化以通过外部MG2 +离子释放通道块,从而使它们具有有效的巧合探测器。这些属性和其他属性在NMDAR亚型中不同,这些属性由构成受体的子单元定义。通常由两种Glun1亚基和两个GLUN2亚基组成的NMDARS,其中包括四种类型,GLUN2A-D。二值的纽尔德含有两个相同的glun2亚基。浇注和配体结合特性(例如去激活动力学)和通道性质(例如,Mg2 +的通道嵌段)在二维仪Nmdars中含有的Glun2亚基上强烈地依赖于Glun2亚基。最近的工作表明,GLUN2亚基的两个不同区域控制大多数二值芽孢芽孢杆依赖性特性:N-末端结构域对门控和配体结合性质的大多数亚型依赖性负责;在GLUN2 S / L位点的网站上的GLUN2亚基之间的单个残基差异是对信道特性的大多数亚型依赖性的原因。因此,两个结构和功能性不同的区域利于NMDAR性质的大部分亚型依赖性。该局部综述突出了最近对重组二级肿瘤的研究揭示了N-末端结构域和GLUN2 S / L位点在NMDAR性质的亚型依赖性中的累积。

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