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[3H]WIN 35,428([3H]CFT)与灵长类动物纹状体中溶解的多巴胺转运体的多种电荷状态结合。

[3H]WIN 35,428 ([3H]CFT) binds to multiple charge-states of the solubilized dopamine transporter in primate striatum.

作者信息

Gracz L M, Madras B K

机构信息

Department of Psychiatry, Harvard Medical School, Massachusetts, USA.

出版信息

J Pharmacol Exp Ther. 1995 Jun;273(3):1224-34.

PMID:7791095
Abstract

Caudate-putamen membranes of rhesus monkey were solubilized (1% digitonin; w/v) and [3H]WIN 35,428 ([3H]CFT: 2 beta-carbomethoxy-3- beta-(4-fluorophenyl)-N-[3H]methyltropane) binding assayed. Saturation analysis revealed high- and low-affinity binding components (KHIGH: 7.48 +/- 2.77 nM; KLOW: 292 +/- 788 nM; mean +/- SEM). Monoamine transport inhibitors and neurotransmitters had similar affinities for soluble and membrane [3H]CFT binding sites (r, 0.998; P < .001). The rank order of potency of these compounds for inhibiting [3H]CFT binding (Lu 19-005 > mazindol > CFT > GBR 12909 > (-)-cocaine > talsupram > dopamine > norepinephrine > citalopram) was consistent with [3H]CFT labeling cocaine binding sites on the dopamine transporter. [3H]CFT binding sites were separated into three protein fractions by anion-exchange chromatography. Monoamine transport inhibitors and neurotransmitters inhibited [3H]CFT binding in each fraction with a rank order of potency consistent with binding to the dopamine transporter. Detection of multiple binding components for [3H]CFT labeled sites by these drugs varied in each fraction. Size-exclusion chromatography indicated [3H]CFT bound to a single protein in each fraction (apparent molecular weight, 170 kDa). Therefore, multiple binding components for cocaine reside solely on the dopamine transporter and exhibit different affinities for drugs depending on the charge-state of the transporter.

摘要

将恒河猴的尾状核 - 壳核膜用1%(重量/体积)的洋地黄皂苷溶解,并测定[3H]WIN 35,428([3H]CFT:2β - 甲氧羰基 - 3β - (4 - 氟苯基) - N - [3H]甲基托烷)结合情况。饱和分析显示存在高亲和力和低亲和力结合成分(KHIGH:7.48±2.77 nM;KLOW:292±788 nM;平均值±标准误)。单胺转运抑制剂和神经递质对可溶性和膜结合的[3H]CFT结合位点具有相似的亲和力(r,0.998;P <.001)。这些化合物抑制[3H]CFT结合的效力排序(Lu 19 - 005 > 马吲哚 > CFT > GBR 12909 > ( - ) - 可卡因 > 他索普明 > 多巴胺 > 去甲肾上腺素 > 西酞普兰)与[3H]CFT标记多巴胺转运体上的可卡因结合位点一致。通过阴离子交换色谱法将[3H]CFT结合位点分离为三个蛋白质组分。单胺转运抑制剂和神经递质在每个组分中抑制[3H]CFT结合,其效力排序与结合多巴胺转运体一致。这些药物检测到的[3H]CFT标记位点的多个结合成分在每个组分中有所不同。尺寸排阻色谱表明[3H]CFT在每个组分中与单一蛋白质结合(表观分子量,170 kDa)。因此,可卡因的多个结合成分仅存在于多巴胺转运体上,并根据转运体的电荷状态对药物表现出不同的亲和力。

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