首页> 美国卫生研究院文献>The Journal of Physiology >Pharmacological evidence for L-aspartate as the neurotransmitter of cerebellar climbing fibres in the guinea-pig.
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Pharmacological evidence for L-aspartate as the neurotransmitter of cerebellar climbing fibres in the guinea-pig.

机译:L-天门冬氨酸作为豚鼠小脑爬纤维神经递质的药理证据。

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摘要

Climbing fibre responses (c.f.r.s) evoked by white matter stimulation and the depolarizations induced by iontophoretically applied L-glutamate and L-aspartate were recorded intracellularly from the proximal dendrites of Purkinje cells in in vitro slice preparations of the guinea-pig cerebellum. Short pulses of L-glutamate and L-aspartate dose-dependently depolarized the Purkinje cell dendrite. Even small doses of these amino acids reduced the input resistance. The maximum decrease in input resistance induced by L-glutamate was 36% and that by L-aspartate was 38%. Intracellular injection of Cs+ allowed Purkinje cell dendrites to be depolarized to a range of -15 to +30 mV. The mean reversal potential for the c.f.r. (Ec) was found to be +10.2 mV (n = 4). The mean reversal potentials obtained for L-glutamate (Eg) and for L-aspartate (Ea) were +7.3 mV (n = 7) and +5.6 mV (n = 7) respectively. When external Na+ concentration was reduced, Ec, Ea and Eg were linearly and similarly shifted in the negative direction, indicating that all these reversal potentials are determined primarily by a Na+ conductance. The effects of the glutamate antagonists 2-amino-5-phosphonovaleric acid (APV), gamma-D-glutamylglycine (gamma-DGG), N-methyl-DL-aspartic acid (NMDLA) and glutamic acid diethylester (GDEE) were compared as to the responses to L-glutamate and L-aspartate and Ca2+-activated focal climbing fibre responses (c.f.c.f.r.s) in order to investigate the receptor type at the synapses formed by the climbing fibres with Purkinje cell dendrites. The order of antagonistic potency to the c.f.c.f.r. was : APV (mean percentage blockade = 99%) greater than gamma-DGG (87%) greater than NMDLA (71%) greater than GDEE (28%). The order of antagonistic potency to the response to L-aspartate was: gamma-DGG (69%) greater than APV (66%) greater than NMDLA (60%) greater than GDEE (31%), and that to the response to L-glutamate was: GDEE (63%) greater than NMDLA (22%) greater than gamma-GDD (15%) greater than APV (14%). APV was found to be the most effective anatagonist of the c.f.c.f.r. Its action was reversible, selective for L-aspartate-induced depolarization and had no effect on the responses to L-glutamate. NMDLA, which has no activity as an agonist, was a greater suppressant of the responses to L-aspartate than those to L-glutamate. These electrophysiological and pharmacological findings suggest that the receptor for the transmitter at the synapses formed by climbing fibres with Purkinje cell dendrites is of the L-aspartate-preferring type, and are thus consistent with the bio-and histochemical findings that L-aspartate may be the endogenous transmitter at this synapse.
机译:在豚鼠小脑体外切片制备中,从浦肯野细胞近端树突状细胞内记录了白质刺激引起的攀爬纤维反应(c.f.r.s)和离子电渗疗法应用L-谷氨酸和L-天冬氨酸引起的去极化。 L-谷氨酸和L-天冬氨酸的短脉冲剂量依赖性地使浦肯野细胞树突去极化。即使是小剂量的这些氨基酸也会降低输入电阻。 L-谷氨酸诱导的输入阻力的最大降低为36%,L-天冬氨酸诱导的为38%。胞内注射Cs +可使Purkinje细胞树突去极化至-15至+30 mV。 c.f.r.的平均反转潜力发现(Ec)为+10.2 mV(n = 4)。 L-谷氨酸(Eg)和L-天冬氨酸(Ea)的平均逆转电位分别为+7.3 mV(n = 7)和+5.6 mV(n = 7)。当外部Na +浓度降低时,Ec,Ea和Eg呈线性且类似地向负方向移动,表明所有这些逆转电位主要由Na +电导确定。比较了谷氨酸拮抗剂2-氨基-5-膦酰戊酸(APV),γ-D-谷氨酰甘氨酸(γ-DGG),N-甲基-DL-天冬氨酸(NMDLA)和谷氨酸二乙酯(GDEE)的作用。对L-谷氨酸和L-天冬氨酸的反应以及Ca2 +激活的局灶性攀爬纤维反应(cfcfrs)的反应,以研究攀登纤维与浦肯野细胞树突形成的突触处的受体类型。对c.f.c.f.r.的拮抗效力顺序是:APV(平均封锁百分比= 99%)大于γ-DGG(87%),大于NMDLA(71%),大于GDEE(28%)。对L-天冬氨酸的拮抗效力的顺序为:γ-DGG(69%)大于APV(66%)大于NMDLA(60%)大于GDEE(31%),以及对L-天冬氨酸的响应-谷氨酸为:GDEE(63%)大于NMDLA(22%)大于gamma-GDD(15%)大于APV(14%)。发现APV是c.f.c.f.r.最有效的拮抗剂。它的作用是可逆的,对L-天冬氨酸诱导的去极化具有选择性,对L-谷氨酸的反应没有影响。 NMDLA没有激动剂的活性,它对L-天冬氨酸的反应比对L-谷氨酸的反应具有更大的抑制作用。这些电生理学和药理学发现表明,用浦肯野细胞树突攀爬纤维形成的突触中的递质受体是L-天冬氨酸优先型的,因此与L-天冬氨酸可能是生物和组织化学结果一致。突触中的内源性递质。

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