Nielsen M, Honore T, Braestrup C
Biochem Pharmacol. 1985 Oct 15;34(20):3633-42. doi: 10.1016/0006-2952(85)90223-0.
[35S]t-Butylbicyclophosphorothionate ([35S]TBPS), a bicyclic cage convulsant, binds to the anion gating mechanism of the GABA/benzodiazepine receptor chloride channel complex. Using a carefully calibrated radiation inactivation technique, the molecular weight of [35S]TBPS binding complexes from frozen rat cerebral cortex was estimated to be 137,000 daltons. The GABA agonist muscimol reduced [35S]TBPS binding to 0-10% of the control value, in a way which is independent of the radiation dose. This shows that the GABA receptor (Mw = 55,000 daltons) is included in the 137,000-dalton [35S]-TBPS binding complex; the [35S]TBPS binding protein alone accounts for 137,000-55,000 = 82,000 daltons. The pyrazolopyridazine etazolate (SQ 20.009) and etomidate in appropriate concentrations both reduced specific binding of [35S]TBPS. The ability of SQ 20.009 and etomidate to reduce [35S]TBPS binding was greatly reduced by exposure to low radiation doses, suggesting that SQ 20.009 and etomidate reduce [35S]TBPS binding by an allosteric mechanism requiring a molecular structure of 450,000-500,000 daltons. Benzodiazepine agonists (ethyl 4-methoxymethyl-6-benzyloxy-beta-carboline-3-carboxylate, ZK 93423) and inverse agonists (methyl 6,7-dimethoxy-4-ethyl-beta-carboline-3-carboxylate, DMCM) enhance and reduce [35S]TBPS binding, respectively, in repeatedly frozen and washed membrane preparations. The effects of ZK 93423 and DMCM on [35S]TBPS binding disappeared upon exposure of membranes to low radiation doses. This suggests that the benzodiazepine receptor site interacts allosterically with the [35S]TBPS binding site, requiring a molecular complex of at least c. 400,000 daltons. The [35S]TBPS site alone in these latter conditions of membrane preparation (repeatedly frozen/washed) revealed a molecular weight of 221,000 daltons (TBPS-site + GABA receptor + unknown structures). The number of binding sites for [35S]TBPS (145 pmol/g tissue) was only slightly higher than for [3H]flunitrazepam (130 pmol/g tissue) in cerebral cortex. These results are all consonant with the conclusion that the GABA/BZ receptor chloride channel complex is composed of highly integrated multimeric subunits, tentatively accounted for by a tetramic complex of molecular weight 548,000 daltons.
[35S]叔丁基双环磷硫代酸酯([35S]TBPS),一种双环笼状惊厥剂,与GABA/苯二氮䓬受体氯离子通道复合物的阴离子门控机制相结合。使用经过仔细校准的辐射失活技术,估计来自冷冻大鼠大脑皮层的[35S]TBPS结合复合物的分子量为137,000道尔顿。GABA激动剂蝇蕈醇将[35S]TBPS结合降低至对照值的0 - 10%,其方式与辐射剂量无关。这表明GABA受体(分子量 = 55,000道尔顿)包含在137,000道尔顿的[35S] - TBPS结合复合物中;单独的[35S]TBPS结合蛋白占137,000 - 55,000 = 82,000道尔顿。吡唑并哒嗪依托唑啉(SQ 20,009)和依托咪酯在适当浓度下均降低了[35S]TBPS的特异性结合。暴露于低辐射剂量后,SQ 20,009和依托咪酯降低[35S]TBPS结合的能力大大降低,这表明SQ 20,009和依托咪酯通过一种变构机制降低[35S]TBPS结合,该机制需要450,000 - 500,000道尔顿的分子结构。苯二氮䓬激动剂(4 - 甲氧基甲基 - 6 - 苄氧基 - β - 咔啉 - 3 - 羧酸乙酯,ZK 93423)和反向激动剂(6,7 - 二甲氧基 - 4 - 乙基 - β - 咔啉 - 3 - 羧酸甲酯,DMCM)在反复冷冻和洗涤的膜制剂中分别增强和降低[35S]TBPS结合。将膜暴露于低辐射剂量后,ZK 93423和DMCM对[35S]TBPS结合的影响消失。这表明苯二氮䓬受体位点与[35S]TBPS结合位点通过变构相互作用,需要至少约400,000道尔顿的分子复合物。在这些膜制备的后一种条件下(反复冷冻/洗涤),单独的[35S]TBPS位点显示分子量为221,000道尔顿(TBPS位点 + GABA受体 + 未知结构)。大脑皮层中[35S]TBPS的结合位点数量(145 pmol/g组织)仅略高于[3H]氟硝西泮(130 pmol/g组织)。这些结果都与以下结论一致,即GABA/BZ受体氯离子通道复合物由高度整合的多聚体亚基组成,初步认为是由分子量为548,000道尔顿的四聚体复合物构成。