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用Triton X - 100处理的脑突触膜中的[3H]噻吩基环己基哌啶结合活性。

[3H]thienylcyclohexylpiperidine binding activity in brain synaptic membranes treated with Triton X-100.

作者信息

Ogita K, Nabeshima T, Yoneda Y

机构信息

Department of Pharmacology, Setsunan University, Osaka, Japan.

出版信息

J Neurochem. 1990 Nov;55(5):1639-46. doi: 10.1111/j.1471-4159.1990.tb04950.x.

DOI:10.1111/j.1471-4159.1990.tb04950.x
PMID:2213016
Abstract

Binding activity of [3H]thienylcyclohexylpiperidine was examined using rat brain synaptic membranes treated with Triton X-100. This compound is proposed to be a noncompetitive antagonist for the N-methyl-D-aspartate (NMDA)-sensitive subclass of brain excitatory amino acid receptors. The activity decreased in proportion to increasing concentrations of the detergent up to 0.08%. In vitro addition of L-glutamate (Glu) partially restored the decreased activity caused by this Triton treatment, whereas further addition of glycine (Gly) entirely reversed the loss of activity to the level found in membranes extensively washed but not treated with a detergent. These stimulatory effects were found to be due to the acceleration of the association of ligand. The rank order of potentiation of the activity coincided well with that of the affinity for the NMDA-sensitive subclass among numerous Glu analogs. The potentiation by Gly as well as Glu was invariably prevented by competitive NMDA antagonists, such as DL-2-amino-5-phosphonovalerate and (+/-)-3-(2-carboxypiperazin-4-yl)propyl-1-phosphonate, but not by strychnine. No significant difference was observed between pharmacological profiles of the activities in synaptic membranes treated and not treated with Triton X-100, except haloperidol. The potency of this sigma-ligand to inhibit the activity was greatly reduced by the Triton treatment in the presence of both Glu and Gly. These results suggest that the regulatory properties of Triton-treated synaptic membranes remain unchanged in terms of the interaction within the NMDA receptor complex.

摘要

使用经曲拉通X - 100处理的大鼠脑突触膜检测了[3H]噻吩基环己基哌啶的结合活性。该化合物被认为是脑兴奋性氨基酸受体中对N - 甲基 - D - 天冬氨酸(NMDA)敏感亚类的非竞争性拮抗剂。在去污剂浓度增加至0.08%之前,活性随去污剂浓度增加而降低。体外添加L - 谷氨酸(Glu)可部分恢复由这种曲拉通处理导致的活性降低,而进一步添加甘氨酸(Gly)则完全将活性损失逆转至在大量洗涤但未用去污剂处理的膜中发现的水平。发现这些刺激作用是由于配体结合加速所致。在众多Glu类似物中,活性增强的顺序与对NMDA敏感亚类的亲和力顺序非常吻合。Gly以及Glu的增强作用总是被竞争性NMDA拮抗剂如DL - 2 - 氨基 - 5 - 膦酸戊酯和(±)- 3 -(2 - 羧基哌嗪 - 4 - 基)丙基 - 1 - 膦酸酯所阻断,但不被士的宁阻断。除氟哌啶醇外,在经曲拉通X - 100处理和未处理的突触膜中,活性的药理学特征未观察到显著差异。在Glu和Gly存在的情况下,曲拉通处理极大地降低了这种西格玛配体抑制活性的效力。这些结果表明,就NMDA受体复合物内的相互作用而言,经曲拉通处理的突触膜的调节特性保持不变。

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