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大鼠输精管中α1-肾上腺素能受体亚型的鉴定:结合与功能研究。

Identification of alpha 1-adrenoceptor subtypes in the rat vas deferens: binding and functional studies.

作者信息

Ohmura T, Oshita M, Kigoshi S, Muramatsu I

机构信息

Department of Pharmacology, Fukui Medical School, Japan.

出版信息

Br J Pharmacol. 1992 Nov;107(3):697-704. doi: 10.1111/j.1476-5381.1992.tb14509.x.

Abstract
  1. The alpha 1-adrenoceptor subtypes of the prostatic and epididymal portion of rat vas deferens were characterized in binding and functional experiments. 2. In saturation experiments, [3H]-prazosin bound to two distinct affinity sites in the epididymal portion of rat vas deferens (pKD = 10.1 +/- 0.13 and 9.01 +/- 0.15, Bmax = 507 and 1231 fmol mg-1 protein, respectively). In the prostatic portion [3H]-prazosin bound to a single affinity site (pKD = 9.82 +/- 0.04, Bmax = 924 fmol mg-1 protein). 3. In the displacement experiments, unlabelled prazosin displaced biphasically the binding of 200 pM [3H]-prazosin to the epididymal portion; the resulting two pKI values were consistent with the affinity constants obtained in the saturation experiments. WB4101 (2-(2,6-dimethoxy-phenoxyethyl)-amino-methyl-1,4-benzodioxane) and benoxathian also discriminated the two affinity sites in the epididymal portion and the population of low affinity sites for the three antagonists was approximately 40%. On the other hand, the prostatic portion predominantly showed a single affinity site for prazosin, WB4101 and benoxathian, although the presence of a small proportion (less than 10%) of the low affinity site could be detected. HV723 (alpha-ethyl-3,4,5-trimethoxy-alpha-(3-((2-(2-methoxyphenoxy)ethyl)-a min o)- propyl) benzeneacetonitrile fumarate) displaced the [3H]-prazosin binding monophasically with a low affinity in both halves. 4. Pretreatment with chlorethylclonidine (CEC) at concentrations higher than 1 microM inhibited 700 pM [3H]-prazosin binding to the prostatic portion by approximately 50%. However, the inhibition in the epididymal portion was much less (approximately 21% at 50 microM CEC).5. In the functional study, the contractile response to noradrenaline was competitively inhibited by prazosin, WB4101, benoxathian and HV723 with similar and low affinities (pKB value ranging from 8.0to 9.0) in the epididymal portion of rat vas deferens. In the prostatic portion of rat vas deferens,noradrenaline also produced a contraction, but the maximal amplitude of contraction developed was approximately one-fourth of that in the epididymal portion. Prazosin and WB4101 also inhibited the contractile response of the prostatic portion with the pKB values similar to those obtained in the epididymal portion. The contractions to noradrenaline in both portions were potently attenuated by 1 LM nifedipine but were not affected by pretreatment with 1O LM CEC.6. Under conditions where P2x-purinoceptors and prejunctional M2-adrenoceptors were blocked, electrical transmural stimulation produced a rapidly developing phasic contraction and a subsequent tonic contraction in the epididymal portion of rat vas deferens. The phasic and tonic contractions were inhibited in a concentration-dependent manner by prazosin (ICs = 25.7 and 25.9 nm, respectively),WB4101 (ICo= 7.27 and 7.58 nM), benoxathian (ICs = 10.9 and 8.66 nM) and HV723 (ICs = 15.9 and 14.9 nM). Nifedipine selectively attenuated the tonic contraction induced by electrical stimulation, and the residual phasic response was inhibited by the antagonists mentioned above with similar affinities to those in the absence of nifedipine. CEC (10 gM) had little effect on the adrenergic neurogenic contractions.7. The present results indicate the presence of two distinct alpha&-adrenoceptor subtypes in the rat vas deferens, which show respectively high and low affinities for each of prazosin, WB4101 and benoxathian,and presumably correspond to putative MIA and alL subtypes according to the recent am-adrenoceptorsubclassifications. The contractions induced by exogenous and endogenous noradrenaline seem to be predominantly mediated through the alL subtype. The heterogeneous distribution of the low affinity sites(alL subtype) may well explain differences in functional responsiveness between the two portions of rat vas deferens.
摘要
  1. 通过结合实验和功能实验对大鼠输精管前列腺部和附睾部的α1 -肾上腺素能受体亚型进行了表征。2. 在饱和实验中,[3H] -哌唑嗪与大鼠输精管附睾部的两个不同亲和力位点结合(pKD分别为10.1±0.13和9.01±0.15,Bmax分别为507和1231 fmol mg-1蛋白质)。在前列腺部,[3H] -哌唑嗪与单个亲和力位点结合(pKD = 9.82±0.04,Bmax = 924 fmol mg-1蛋白质)。3. 在置换实验中,未标记的哌唑嗪以双相方式置换200 pM [3H] -哌唑嗪与附睾部的结合;得到的两个pKI值与饱和实验中获得的亲和力常数一致。WB4101(2 -(2,6 -二甲氧基苯氧基乙基)-氨基甲基-1,4 -苯并二恶烷)和贝诺噻嗪也区分了附睾部的两个亲和力位点,三种拮抗剂的低亲和力位点群体约为40%。另一方面,前列腺部主要显示出对哌唑嗪、WB4101和贝诺噻嗪的单个亲和力位点,尽管可以检测到一小部分(小于10%)低亲和力位点的存在。HV723(α -乙基-3,4,5 -三甲氧基-α -(3 -((2 -(2 -甲氧基苯氧基)乙基)氨基)-丙基)苯乙腈富马酸盐)以低亲和力单相置换[3H] -哌唑嗪的结合,在两部分均如此。4. 用高于1μM浓度的氯乙可乐定(CEC)预处理可使700 pM [3H] -哌唑嗪与前列腺部的结合抑制约50%。然而,在附睾部的抑制作用要小得多(在50μM CEC时约为21%)。5. 在功能研究中,在大鼠输精管附睾部,对去甲肾上腺素的收缩反应被哌唑嗪、WB4101、贝诺噻嗪和HV723以相似且低的亲和力竞争性抑制(pKB值范围为8.0至9.0)。在大鼠输精管前列腺部,去甲肾上腺素也产生收缩,但产生的最大收缩幅度约为附睾部的四分之一。哌唑嗪和WB4101也抑制前列腺部的收缩反应,其pKB值与在附睾部获得的值相似。两部分对去甲肾上腺素的收缩均被1μM硝苯地平有效减弱,但不受10μM CEC预处理的影响。6. 在P2x -嘌呤受体和节前M2 -肾上腺素能受体被阻断的条件下,电跨壁刺激在大鼠输精管附睾部产生快速发展的相性收缩和随后的强直性收缩。相性和强直性收缩被哌唑嗪(IC50分别为25.7和25.9 nM)、WB4101(IC50 = 7.27和7.58 nM)、贝诺噻嗪(IC50 = 10.9和8.66 nM)和HV723(IC50 = 15.9和14.9 nM)以浓度依赖性方式抑制。硝苯地平选择性减弱电刺激诱导的强直性收缩,剩余的相性反应被上述拮抗剂以与无硝苯地平时相似的亲和力抑制。CEC(10μM)对肾上腺素能神经源性收缩几乎没有影响。7. 目前的结果表明大鼠输精管中存在两种不同的α1 -肾上腺素能受体亚型,它们对哌唑嗪、WB4101和贝诺噻嗪中的每一种分别表现出高亲和力和低亲和力,根据最近的α -肾上腺素能受体分类,推测分别对应于假定的α1A和α1L亚型。外源性和内源性去甲肾上腺素诱导的收缩似乎主要通过α1L亚型介导。低亲和力位点(α1L亚型)的异质分布很可能解释了大鼠输精管两部分之间功能反应性的差异。

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