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作用于N-甲基-D-天冬氨酸受体的通道阻滞剂:前庭和离子通道孔突变的不同影响

Channel blockers acting at N-methyl-D-aspartate receptors: differential effects of mutations in the vestibule and ion channel pore.

作者信息

Kashiwagi Keiko, Masuko Takashi, Nguyen Christopher D, Kuno Tomoko, Tanaka Ikuko, Igarashi Kazuei, Williams Keith

机构信息

Graduate School of Pharmaceutical Sciences, Chiba University, Chiba, Japan.

出版信息

Mol Pharmacol. 2002 Mar;61(3):533-45. doi: 10.1124/mol.61.3.533.

Abstract

A large number of structurally diverse compounds act as open-channel blockers of NMDA receptors. They may share discrete or overlapping binding sites within the channel. In this study, the effects of mutations in and around the membrane-spanning and pore-forming regions of NMDA receptor subunits were studied with three blockers, MK-801, memantine, and TB-3-4, using recombinant NMDA receptors expressed in Xenopus laevis oocytes. Mutations at the critical asparagine residues in the M2 loop of NR1 and NR2B and at a tryptophan residue in M2 of NR2B reduced block by MK-801, memantine, and TB-3-4. Mutations at residues in the pre-M1, M1, M3, post-M3, and post-M4 regions had differential effects on the three blockers. Many mutations in these regions reduced block by MK-801 and TB-3-4 but had no effect on block by memantine. The differential effects on block by memantine and MK-801 are unlikely to be caused by differences in the size of these blockers. Benzyl rings in MK-801 and TB-3-4 may make hydrophobic interactions with aromatic and hydrophobic amino acid residues in the pore. Some mutations in the pre-M1 and M3 regions generated constitutively open channels, characterized by large holding currents. The effects of the various mutants are discussed in the context of models based on the known structure of the pore of the KcsA potassium channel and on previous studies dealing with solvent accessible residues in NMDA receptor subunits as determined by modification after cysteine mutagenesis.

摘要

大量结构多样的化合物可作为NMDA受体的开放通道阻滞剂。它们可能在通道内共享离散或重叠的结合位点。在本研究中,使用非洲爪蟾卵母细胞中表达的重组NMDA受体,研究了NMDA受体亚基跨膜和孔形成区域及其周围的突变对三种阻滞剂MK-801、美金刚和TB-3-4的影响。NR1和NR2B的M2环中关键天冬酰胺残基以及NR2B的M2中一个色氨酸残基的突变减少了MK-801、美金刚和TB-3-4的阻滞作用。M1前、M1、M3、M3后和M4后区域残基的突变对这三种阻滞剂有不同影响。这些区域的许多突变减少了MK-801和TB-3-4的阻滞作用,但对美金刚的阻滞作用没有影响。美金刚和MK-801对阻滞作用的不同影响不太可能是由这些阻滞剂大小的差异引起的。MK-801和TB-3-4中的苄基环可能与孔中的芳香族和疏水氨基酸残基发生疏水相互作用。M1前和M3区域的一些突变产生了组成型开放通道,其特征是有大的保持电流。根据基于KcsA钾通道孔的已知结构的模型以及先前关于通过半胱氨酸诱变后修饰确定的NMDA受体亚基中溶剂可及残基的研究,讨论了各种突变体的影响。

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