首页> 美国卫生研究院文献>The Journal of Physiology >Influence of a threonine residue in the S2 ligand binding domain in determining agonist potency and deactivation rate of recombinant NR1a/NR2D NMDA receptors
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Influence of a threonine residue in the S2 ligand binding domain in determining agonist potency and deactivation rate of recombinant NR1a/NR2D NMDA receptors

机译:S2配体结合域中的苏氨酸残基对确定重组NR1a / NR2D NMDA受体激动剂效力和失活率的影响

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摘要

NR1/NR2D NMDA receptors display unusually slow deactivation kinetics which may be critical for their role as extrasynaptic receptors. A threonine to alanine point mutation has been inserted at amino acid position 692 of the NR2D subunit (T692A). Recombinant NR1a/NR2D(T692A) NMDA receptors have been expressed in Xenopus laevis oocytes and their pharmacological and single-channel properties examined using two-electrode voltage-clamp and patch-clamp recording techniques. Glutamate dose–response curves from NR1a/NR2D(T692A) receptor channels produced an approximately 1600-fold reduction in glutamate potency compared to wild-type NR1a/NR2D receptors. There was no change in Hill slopes or gross reduction in mean maximal currents recorded in oocytes expressing either wild-type or mutant receptors. The mutation did not affect the potency of the co-agonist glycine. The shifts in potency produced by NR2D(T692A) containing receptors when activated by other glutamate-site agonists such as aspartate or NMDA were 30- to 60-fold compared to wild-type. Single-channel conductance levels of NR1a/NR2D(T692A) mutant receptors were indistinguishable from wild-type NR2D-containing channels. Additionally NR1a/NR2D(T692A) receptors showed the transitional asymmetry that is characteristic of NR2D-containing NMDA receptors. Rapid applications of glutamate on outside-out patches containing NR1a/NR2D(T692A) receptors produced macroscopic current deactivations that were about 60-fold faster than wild-type NR1a/NR2D receptors. Our results suggest that this conserved threonine residue plays a crucial role in ligand binding to NMDA NR2 receptor subunits and supports the idea that the slow decay kinetics associated with NR1a/NR2D NMDA receptors can be explained by the slow dissociation of glutamate from this NMDA receptor subtype.
机译:NR1 / NR2D NMDA受体显示异常缓慢的失活动力学,这可能对于它们作为突触外受体的作用至关重要。苏氨酸到丙氨酸的点突变已插入到NR2D亚基(T692A)的692位氨基酸处。重组NR1a / NR2D(T692A)NMDA受体已在非洲爪蟾卵母细胞中表达,并使用两电极电压钳和膜片钳记录技术对其药理和单通道性质进行了研究。与野生型NR1a / NR2D受体相比,NR1a / NR2D(T692A)受体通道的谷氨酸剂量反应曲线产生的谷氨酸效能降低了约1600倍。在表达野生型或突变型受体的卵母细胞中,希尔斜率没有变化,平均最大电流也没有明显降低。该突变不影响共激动剂甘氨酸的效力。与野生型相比,含有NR2D(T692A)的受体在被其他谷氨酸位点激动剂(如天冬氨酸或NMDA)激活时产生的效能变化为30至60倍。 NR1a / NR2D(T692A)突变体受体的单通道电导水平与野生型含NR2D通道没有区别。此外,NR1a / NR2D(T692A)受体表现出过渡不对称性,这是含有NR2D的NMDA受体的特征。谷氨酸在含有NR1a / NR2D(T692A)受体的外向外贴剂上的快速施用产生了宏观电流失活,该失活速度比野生型NR1a / NR2D受体快60倍。我们的结果表明,这种保守的苏氨酸残基在配体与NMDA NR2受体亚基的结合中起着至关重要的作用,并支持这样的观点:与NR1a / NR2D NMDA受体相关的缓慢衰变动力学可以通过谷氨酸从该NMDA受体亚型的缓慢解离来解释。 。

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