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通过[3H]-二氢麦角隐亭结合法证明兔心脏中的α-肾上腺素能受体。

Demonstration of alpha-adrenoceptors in the rabbit heart by [3H]-dihydroergocryptine binding.

作者信息

Schümann H J, Brodde O E

出版信息

Naunyn Schmiedebergs Arch Pharmacol. 1979 Sep;308(3):191-8. doi: 10.1007/BF00501382.

Abstract

For direct identification of alpha-adrenoceptors in a membrane fraction of the rabbit heart the potent alpha-adrenoceptor antagonist [3H]-dihydroergocryptine ([3H]-DHE) was used. 1. The binding of [3H]-DHE was saturable with 80 fmol of [3H]-DHE bound/mg protein and of high affinity with an equilibrium dissociation constant (KD) of 11.5 nM. Binding of [3H]-DHE (6 nM) was rapid (t 1/2 = 2 min) and readily reversible. From the ratio of the rate constants for forward (K1 = 1.97 X 10(7) M-1 min-1) and reverse (K2 = 0.206 min-1) reactions a KD-value of 10 nM was calculated, which is in good agreement with that obtained by equilibrium studies. 2. Adrenergic agonists compete for [3H]-DHE binding in an order to potency: (-)adrenaline greater than (-)phenyleprine greater than (-)isoprenaline and adrenergic antagonists in the order: phentolamine greater than yohimbine greater than (-)propranolol. Binding is stereospecific as indicated by the greater potency of (-)adrenaline than (+/-)adrenaline in displacing [3H]-DHE from the binding sites. 3. For comparison the binding of the potent beta-adrenoceptor antagonist (-)[3H]-dihydroalprenolol ((-)[3H]-DHA) was measured in the same membrane fraction. The number and affinity of beta-adrenoceptors amounted to 115 fmol of (-)[3H]-DHA bound/mg protein at saturation and KD = 7.9 nM. Adrenergic agonists compete for (-)[3H]-DHA binding in an order of potency: (-)isoprenaline greater than (-)adrenaline greater than (-)phenylephrine; and adrenergic antagonists in the order: (-)prapranolol greater than phentolamine. 4. It is concluded that in a membrane fraction of the rabbit heart there exist binding sites for [3H]-DHE which have characteristics indistinguishable from alpha-adrenoceptors. Thus the present results are in agreement with previously reported data on the existence of cardiac alpha-adrenoceptors in the rabbit heart (Schümann et al., 1974; Endoh et al., 1976b).

摘要

为了直接鉴定兔心脏膜组分中的α-肾上腺素能受体,使用了强效α-肾上腺素能受体拮抗剂[3H]-二氢麦角隐亭([3H]-DHE)。1. [3H]-DHE的结合具有饱和性,每毫克蛋白质结合80 fmol的[3H]-DHE,且具有高亲和力,平衡解离常数(KD)为11.5 nM。[3H]-DHE(6 nM)的结合迅速(t1/2 = 2分钟)且易于逆转。根据正向(K1 = 1.97×10(7) M-1分钟-1)和反向(K2 = 0.206分钟-1)反应的速率常数之比,计算出KD值为10 nM,这与通过平衡研究获得的值非常一致。2. 肾上腺素能激动剂以以下效力顺序竞争[3H]-DHE结合:(-)肾上腺素>(-)去氧肾上腺素>(-)异丙肾上腺素,肾上腺素能拮抗剂的顺序为:酚妥拉明>育亨宾>(-)普萘洛尔。如(-)肾上腺素在从结合位点取代[3H]-DHE方面比(±)肾上腺素效力更强所示,结合具有立体特异性。3. 为了进行比较,在相同的膜组分中测量了强效β-肾上腺素能受体拮抗剂(-)[3H]-二氢阿普洛尔((-)[3H]-DHA)的结合。β-肾上腺素能受体的数量和亲和力在饱和时为每毫克蛋白质结合115 fmol的(-)[3H]-DHA,KD = 7.9 nM。肾上腺素能激动剂以以下效力顺序竞争(-)[3H]-DHA结合:(-)异丙肾上腺素>(-)肾上腺素>(-)去氧肾上腺素;肾上腺素能拮抗剂的顺序为:(-)普萘洛尔>酚妥拉明。4. 得出的结论是,在兔心脏的膜组分中存在与α-肾上腺素能受体特征无法区分的[3H]-DHE结合位点。因此,目前的结果与先前报道的关于兔心脏中存在心脏α-肾上腺素能受体的数据一致(舒曼等人,1974年;远藤等人,1976年b)。

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