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Subunit specificity and mechanism of action of NMDA partial agonist D-cycloserine.

机译:NMDA部分激动剂D-环丝氨酸的亚基特异性和作用机理。

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摘要

Recently, we have shown that 1-aminocyclopropanecarboxylic acid (ACPC) acts simultaneously as a high affinity full glycine agonist and a low affinity glutamate site competitive antagonist for NMDA receptor channels. In this paper, we have attempted to determine the subunit specificity and mechanism of action of a different putative cyclic partial agonist, D-cycloserine (DCS). NMDA receptor currents were measured utilizing the two-electrode voltage clamp technique on Xenopus oocytes injected with NR1-1a cRNA and either NR2A, NR2B or NR2C cRNA. Efficacies of DCS were 35-68% of glycine controls for channels containing NR1-1a and NR2A or NR2B subunits, but channels containing NR2C subunits had efficacies greater than glycine controls (192%). Unlike ACPC, DCS efficacy does not increase with increasing NMDA concentration; however, the lowered efficacy elicited by DCS results solely through its interaction with the glycine binding site. The efficacy of DCS was pH sensitive for NR2A or NR2B-containing channels, but not for channels containing NR2C. From this, we suggest that the protonated and deprotonated forms of DCS when bound, probably open NMDA channels with different efficiency. Two models compatible with these results are presented.
机译:最近,我们已经显示1-氨基环丙烷羧酸(ACPC)同时充当NMDA受体通道的高亲和力全甘氨酸激动剂和低亲和力谷氨酸位点竞争性拮抗剂。在本文中,我们试图确定另一种假定的环状部分激动剂D-环丝氨酸(DCS)的亚基特异性和作用机理。使用两电极电压钳技术在注射了NR1-1a cRNA和NR2A,NR2B或NR2C cRNA的非洲爪蟾卵母细胞上测量NMDA受体电流。对于含有NR1-1a和NR2A或NR2B亚基的通道,DCS的效率是甘氨酸对照的35-68%,但是包含NR2C亚基的通道的效率高于甘氨酸对照(192%)。与ACPC不同,DCS的功效不会随着NMDA浓度的增加而增加。然而,DCS引起的功效降低仅通过其与甘氨酸结合位点的相互作用而导致。 DCS的功效对于包含NR2A或NR2B的通道对pH敏感,但对于包含NR2C的通道则不敏感。由此,我们建议束缚时质子化和去质子化形式的DCS可能以不同的效率打开NMDA通道。提出了与这些结果兼容的两个模型。

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