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Group I metabotropic glutamate receptors mediate slow inhibition of calcium current in neocortical neurons.

机译:第一组代谢型谷氨酸受体介导新皮层神经元中钙电流的缓慢抑制。

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Metabotropic glutamate receptor (mGluR)-mediated inhibition of high-voltage-activated Ca2+ currents was investigated in pyramidal neurons acutely isolated from rat dorsal frontoparietal neocortex. Whole cell recordings were made at 30-32 degrees C, with Ca2+ as the charge carrier. Selective agonists were used to classify the subgroup of mGluRs mediating the response. Ca2+ currents were inhibited by (1S,3R)-1-aminocyclopentane-1,3-dicarboxylic acid (1S, 3R-ACPD) and by the group I agonist (RS)-3,5-dihydroxyphenylglycine (DHPG) but not by the group II agonist (2S,2'R,3'R)-2-(2', 3'-dicarboxycyclopropyl)glycine (DCG-IV) or the group III agonist (+)-2-amino-4-phosphonobutryic acid (-AP4). (2S,1'S, 2'S)-2-(carboxycyclopropyl)glycine (-CCG-I) was effective at 10 and 100 microM but not at 1 microM, consistent with involvement of group I mGluRs. Variable results were obtained with the putative mGluR5-selective agonist (RS)-2-chloro-5-hydroxyphenylglycine (CHPG) and the putative mGluR1-selective antagonist (S)-4-carboxyphenylglycine [(S)-4CPG], indicating that the group I mGluR subtypes may vary between cells or that these compounds were activating other receptors. The actions of (+)-alpha-methyl-4-carboxyphenylglycine [(+)-MCPG] were consistent with it being a low-potency antagonist. Several features of the Ca2+ current inhibition evoked by DHPG distinguished it from the rapid modulation typical of a direct action of G proteins on Ca2+ channels; the inhibition was slow to reach maximum (tens of seconds), current activation was not slowed or shifted in the positive voltage direction, and the inhibition was not relieved by positive prepulses. Nimodipine and omega-conotoxin GVIA blocked fractions of the current and also reduced the magnitude of the responses to DHPG, indicating that both L- and N-type Ca2+ channels were regulated. These results further differentiate the slow modulatory pathway observed in neocortical neurons when Ca2+ is used as the charge carrier from the rapid voltage-dependent mechanism reported to inhibit Ba2+ currents under Ca2+-free conditions.
机译:在从大鼠背侧额叶新皮层急性分离的锥体神经元中研究了代谢型谷氨酸受体(mGluR)介导的对高压激活的Ca2 +电流的抑制。全细胞记录是在30-32摄氏度下进行的,其中Ca2 +作为电荷载体。选择性激动剂用于分类介导反应的mGluRs亚组。 Ca2 +电流受(1S,3R)-1-氨基环戊烷-1,3-二羧酸(1S,3R-ACPD)和I组激动剂(RS)-3,5-二羟基苯基甘氨酸(DHPG)抑制,但不受II组激动剂(2S,2'R,3'R)-2-(2',3'-二羧基环丙基)甘氨酸(DCG-IV)或III组激动剂(+)-2-氨基-4-膦酰基丁酸( -AP4)。 (2S,1'S,2'S)-2-(羧基环丙基)甘氨酸(-CCG-1)在10和100 microM时有效,但在1 microM时无效,这与I组mGluR的参与一致。推定的mGluR5选择性激动剂(RS)-2-氯-5-羟苯基甘氨酸(CHPG)和推定的mGluR1选择性拮抗剂(S)-4-羧苯基甘氨酸[(S)-4CPG]获得了可变的结果,表明第I组mGluR亚型可能在细胞之间变化,或者这些化合物正在激活其他受体。 (+)-α-甲基-4-羧苯基甘氨酸[(+)-MCPG]的作用与它是一种低效拮抗剂是一致的。 DHPG引起的Ca2 +电流抑制的几个特征使其不同于G蛋白对Ca2 +通道的直接作用的快速调节。抑制作用缓慢地达到最大值(数十秒),电流激活不会减慢或在正电压方向上移动,并且抑制作用也不会因正预脉冲而减轻。尼莫地平和ω-芋螺毒素GVIA阻断了电流的一部分,并且还降低了对DHPG的响应幅度,表明L型和N型Ca2 +通道均受到调节。这些结果进一步区分了当将Ca2 +用作电荷载体时,在新皮层神经元中观察到的慢调节途径与据报道在无Ca2 +条件下抑制Ba2 +电流的快速电压依赖性机制的区别。

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