Wrighton David C, Baker Edward J, Chen Philip E, Wyllie David J A
Centre for Neuroscience Research, Hugh Robson Building, University of Edinburgh, George Square, Edinburgh, UK.
J Physiol. 2008 Jan 1;586(1):211-25. doi: 10.1113/jphysiol.2007.143164. Epub 2007 Oct 25.
N-methyl-d-aspartate receptors (NMDARs) display differences in their sensitivity to the channel blockers Mg(2+) and memantine that are dependent on the identity of the NR2 subunit present in the receptor-channel complex. This study used two-electrode voltage-clamp recordings from Xenopus laevis oocytes expressing recombinant NMDARs to investigate the actions of Mg(2+) and memantine at the two NMDARs displaying the largest differences in sensitivity to these blockers, namely NR1/NR2A and NR1/NR2D NMDARs. In addition, NR2A/2D chimeric subunits have been employed to examine the effects of pore-forming elements and ligand-binding domains (LBD) on the potency of the block produced by each of these inhibitors. Our results show that, as previously documented, NR2D-containing NMDARs are less sensitive to voltage-dependent Mg(2+) block than their NR2A-containing counterparts. The reduced sensitivity is determined by the M1M2M3 membrane-associated regions, as replacing these regions in NR2A subunits with those found in NR2D subunits results in a approximately 10-fold reduction in Mg(2+) potency. Intriguingly, replacing the NR2A LBD with that from NR2D subunits results in a approximately 2-fold increase in Mg(2+) potency. Moreover, when responses mediated by NR1/NR2A NMDARs are evoked by the partial agonist homoquinolinate, rather than glutamate, Mg(2+) also displays an increased potency. Memantine block of glutamate-evoked currents is most potent at NR1/NR2D NMDARs, but no differences are observed in its ability to inhibit NR2A-containing or NR2A/2D chimeric NMDARs. We suggest that the potency of block of NMDARs by Mg(2+) is influenced not only by pore-forming regions but also the LBD and the resulting conformational changes that occur following agonist binding.
N-甲基-D-天冬氨酸受体(NMDARs)对通道阻滞剂Mg(2+)和美金刚的敏感性存在差异,这种差异取决于受体-通道复合物中存在的NR2亚基的身份。本研究利用表达重组NMDARs的非洲爪蟾卵母细胞进行双电极电压钳记录,以研究Mg(2+)和美金刚对两种对这些阻滞剂敏感性差异最大的NMDARs的作用,即NR1/NR2A和NR1/NR2D NMDARs。此外,还采用了NR2A/2D嵌合亚基来研究成孔元件和配体结合域(LBD)对每种抑制剂产生的阻断效力的影响。我们的结果表明,如先前文献所记载,含NR2D的NMDARs对电压依赖性Mg(2+)阻断的敏感性低于含NR2A的对应物。敏感性降低是由M1M2M3膜相关区域决定的,因为用NR2D亚基中的区域替换NR2A亚基中的这些区域会导致Mg(2+)效力降低约10倍。有趣的是,用NR2D亚基的LBD替换NR2A的LBD会使Mg(2+)效力增加约2倍。此外,当由部分激动剂高喹啉酸盐而非谷氨酸诱发NR1/NR2A NMDARs介导的反应时,Mg(2+)的效力也会增加。美金刚对谷氨酸诱发电流的阻断在NR1/NR2D NMDARs上最为有效,但在抑制含NR2A或NR2A/2D嵌合NMDARs的能力方面未观察到差异。我们认为,Mg(2+)对NMDARs的阻断效力不仅受成孔区域的影响,还受LBD以及激动剂结合后发生的构象变化的影响。