Berger S P, Farrell K, Conant D, Kempner E S, Paul S M
Laboratory of Psychiatry and Neurology, University of California, San Francisco/San Francisco Veterans Administration Medical Center 94121.
Mol Pharmacol. 1994 Oct;46(4):726-31.
Using radiation inactivation, we have estimated the target size for the neuronal dopamine transporter protein. The specific binding of several radioligands previously shown to label the dopamine transporter was determined in an irradiated striatal membrane preparation. The apparent target size of the 1-[1-(2-[3H]benzo[b]thienyl)cyclohexyl]piperidine site was approximately 98 kDa. However, the apparent target size of the "cocaine binding site," as measured with the cocaine analogue 2 beta-[3H]carbomethoxy-3 beta-(4-fluorophenyl)tropane in the same assays, was approximately 140 kDa. Radiation inactivation of the binding of other ligands (GBR-12935 and mazindol) led to target size estimates in the same range (94 kDa and 133 kDa, respectively). All of these target sizes are significantly larger than the estimate of 70 kDa derived from the deduced amino acid sequence for the cloned dopamine reuptake transporter cDNA. Larger target sizes than expected have also been reported for ligand binding to the sodium-dependent serotonin transporter and glucose transporter. The estimated sizes for the ligand binding site(s) associated with the dopamine transporter protein are difficult to reconcile with a single transporter protein of 70 kDa. We conclude that the dopamine transporter protein is a homo- or hetero-oligomer when occupied in situ by uptake-blocking drugs like cocaine.
我们运用辐射失活法估算了神经元多巴胺转运蛋白的靶标大小。在经辐射处理的纹状体膜制剂中,测定了先前已证明可标记多巴胺转运体的几种放射性配体的特异性结合情况。1-[1-(2-[³H]苯并[b]噻吩基)环己基]哌啶位点的表观靶标大小约为98 kDa。然而,在相同测定中,用可卡因类似物2β-[³H]甲氧基羰基-3β-(4-氟苯基)托烷测定的“可卡因结合位点”的表观靶标大小约为140 kDa。其他配体(GBR-12935和吗茚酮)结合的辐射失活导致靶标大小估计值在相同范围内(分别为94 kDa和133 kDa)。所有这些靶标大小均显著大于从克隆的多巴胺再摄取转运体cDNA推导的氨基酸序列得出的70 kDa估计值。对于配体与钠依赖性5-羟色胺转运体和葡萄糖转运体的结合,也有报道称靶标大小比预期的大。与多巴胺转运蛋白相关的配体结合位点的估计大小难以与70 kDa的单一转运蛋白相协调。我们得出结论,当可卡因等摄取阻断药物原位占据时,多巴胺转运蛋白是同聚体或异聚体。