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大鼠脑膜中与神经元去甲肾上腺素摄取位点相关的[3H]地昔帕明结合特性研究

Characterization of [3H]desipramine binding associated with neuronal norepinephrine uptake sites in rat brain membranes.

作者信息

Lee C M, Javitch J A, Snyder S H

出版信息

J Neurosci. 1982 Oct;2(10):1515-25. doi: 10.1523/JNEUROSCI.02-10-01515.1982.

Abstract

A variety of evidence indicates that [3H]desipramine can label neuronal norepinephrine uptake sites in brain membranes. Pretreatment of rat cerebral cortical membranes with 0.3 M KCl increases the ratio of high affinity to low affinity saturable [3H]desipramine binding. With this improved tissue preparation, we have confirmed our earlier observation that the high affinity [3H]desipramine binding component (KD = 2 to 4 nM) is associated with norepinephrine neuronal uptake sites. The potencies of various antidepressant drugs in reducing [3H]desipramine binding correlate with their inhibition of neuronal [3H]norepinephrine accumulation. Like the norepinephrine uptake system, high affinity [3H]desipramine binding is dependent both on sodium and chloride, with half-maximal stimulation by 10 mM chloride. Although bromide can substitute for chloride to stimulate binding, other anions, including iodide, fluoride, acetate, citrate, and phosphate, are inactive. Comparable sodium and anion regulation of [3H]imipramine binding to serotonin uptake recognition sites also is observed. The association of [3H]desipramine binding sites with neuronal norepinephrine uptake sites is supported further by the selective abolition of high affinity [3H]desipramine binding following the destruction of central norepinephrine neurons by intraperitoneal administration of DSP-4 (N-(2-chloroethyl)-N-ethyl-2-bromobenzylamine). In vitro incubation of cerebral cortical membranes with DSP-4 also selectively abolishes the high affinity [3H]desipramine binding, an effect which cannot be reversed by repeated washing of the membranes, suggesting that DSP-4 alkylates neuronal norepinephrine uptake sites.

摘要

多种证据表明,[3H]去甲丙咪嗪能够标记脑膜中的神经元去甲肾上腺素摄取位点。用0.3M氯化钾预处理大鼠大脑皮层膜,可增加高亲和力与低亲和力可饱和[3H]去甲丙咪嗪结合的比例。通过这种改进的组织制备方法,我们证实了之前的观察结果,即高亲和力[3H]去甲丙咪嗪结合成分(KD = 2至4 nM)与去甲肾上腺素神经元摄取位点相关。各种抗抑郁药物在降低[3H]去甲丙咪嗪结合方面的效力与其对神经元[3H]去甲肾上腺素积累的抑制作用相关。与去甲肾上腺素摄取系统一样,高亲和力[3H]去甲丙咪嗪结合既依赖于钠也依赖于氯,10 mM氯可产生半数最大刺激作用。虽然溴化物可替代氯来刺激结合,但其他阴离子,包括碘化物、氟化物、乙酸盐、柠檬酸盐和磷酸盐均无活性。对于[3H]丙咪嗪与5-羟色胺摄取识别位点的结合,也观察到了类似的钠和阴离子调节作用。腹腔注射DSP-4(N-(2-氯乙基)-N-乙基-2-溴苄胺)破坏中枢去甲肾上腺素神经元后,高亲和力[3H]去甲丙咪嗪结合被选择性消除,这进一步支持了[3H]去甲丙咪嗪结合位点与神经元去甲肾上腺素摄取位点的关联。用DSP-4对大脑皮层膜进行体外孵育也选择性地消除了高亲和力[3H]去甲丙咪嗪结合,这种作用不能通过反复洗涤膜来逆转,这表明DSP-4使神经元去甲肾上腺素摄取位点烷基化。

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