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首页> 外文期刊>The Journal of Physiology >Internal Mg2+ block of recombinant NMDA channels mutated within the selectivity filter and expressed in Xenopus oocytes.
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Internal Mg2+ block of recombinant NMDA channels mutated within the selectivity filter and expressed in Xenopus oocytes.

机译:重组NMDA通道的内部Mg2 +块在选择性滤膜内发生突变,并在非洲爪蟾卵母细胞中表达。

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1. The NMDA receptor channel is blocked by both external and internal Mg2+ ions, which are assumed to bind inside the channel on each side of a central barrier. We have analysed the internal Mg2+ block in recombinant NR1-NR2A NMDA receptors expressed in Xenopus oocytes. We have determined the effects of mutations of two asparagines that line the selectivity filter of the channel, one located within the NR1 subunit (N598) and the other within the NR2A subunit (N596). 2. The whole-cell current-voltage relation of wild-type NMDA channels shows inward rectification that reflects the voltage-dependent block produced by the internal Mg2+ of the oocyte. This inward rectification is slightly reduced in the NR2 mutant (N596S) but is abolished in the NR1 mutants (N598Q and N598S). This suggests that the NR1 asparagine plays a larger role than the NR2 asparagine in controlling the internal Mg2+ block. 3. Single-channel current-voltage relations confirm that the internal Mg2+ block is reduced in both the NR1 and NR2 mutants. However, the reduction is small and is similar for the two families of mutants. 4. The discrepancy between whole-cell and single-channel data is partly due to differential effects of internal Mg2+ on the open probabilities of the two conductance states present in NR1 mutant channels. 5. The results suggest that mutations of NR1 and NR2 asparagines lower the central barrier to Mg2+. An additional contribution of the NR2 asparagine to the external Mg2+ binding site (and possibly to the external barrier that controls access to this site) may account for the marked relief of external Mg2+ block produced by the NR2 mutation.
机译:1. NMDA受体通道被外部和内部Mg2 +离子阻塞,这些离子被认为结合在中央屏障每一侧的通道内部。我们已经分析了非洲爪蟾卵母细胞中表达的重组NR1-NR2A NMDA受体的内部Mg2 +阻滞。我们已经确定了两个天冬酰胺突变对通道选择性过滤器的影响,一个位于NR1亚基(N598)内,另一个位于NR2A亚基(N596)内。 2.野生型NMDA通道的全细胞电流-电压关系显示向内整流,反映了卵母细胞内部Mg2 +产生的电压依赖性传导阻滞。内向整流在NR2突变体(N596S)中略有减少,但在NR1突变体(N598Q和N598S)中被取消。这表明NR1天冬酰胺在控制内部Mg2 +阻滞中比NR2天冬酰胺发挥更大的作用。 3.单通道电流-电压关系证实了NR1和NR2突变体中的内部Mg2 +嵌段都减少了。但是,减少幅度很小,并且对于两个突变体家族而言,相似。 4.全细胞和单通道数据之间的差异部分是由于内部Mg2 +对NR1突变通道中存在的两个电导状态的打开概率的不同影响。 5.结果表明,NR1和NR2天冬酰胺的突变降低了Mg2 +的中心屏障。 NR2天冬酰胺对外部Mg2 +结合位点(以及可能对控制进入该位点的外部屏障)的额外贡献可能解释了由NR2突变产生的外部Mg2 +阻滞的显着缓解。

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