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苏拉明对三磷酸腺苷类似物诱导的豚鼠输精管收缩的影响。

Effects of suramin on contractions of the guinea-pig vas deferens induced by analogues of adenosine 5'-triphosphate.

作者信息

Bailey S J, Hourani S M

机构信息

School of Biological Sciences, University of Surrey, Guildford.

出版信息

Br J Pharmacol. 1995 Mar;114(6):1125-32. doi: 10.1111/j.1476-5381.1995.tb13324.x.

Abstract
  1. Adenosine 5'-triphosphate (ATP) and some of its analogues contract the guinea-pig vas deferens, acting via receptors which have been classified as P2X-purinoceptors. We have recently shown, however, that the effects of ATP are enhanced, rather than inhibited, by the non-selective P2 antagonist, suramin, and that this enhancement could not easily be explained in terms of inhibition by suramin of the breakdown of ATP. We therefore investigated the effects of suramin on contractions induced by ATP analogues, to define the structure-activity relationships of the suramin-resistant response. 2. In the absence of suramin, the order of potency for ATP analogues was adenosine 5'-(alpha,beta-methylene)triphosphonate (AMPCPP) = P1,P5-diadenosine pentaphosphate (Ap5A) = adenosine 5'-tetraphosphate (Ap4) > adenosine 5'-O-(3-thiotriphosphate) (ATP gamma S) = adenylyl 5'-(beta,gamma-methylene) diphosphonate (AMPPCP) > P1,P5-diadenosine tetraphosphate (Ap4A) > adenosine 5'-O-(2- thiodiphosphate) (ADP beta S) > 2-methylthioadenosine 5'-triphosphate (MeSATP) > or = ATP > adenosine 5'-diphosphate (ADP). This is generally in agreement with previously reported structure-activity relationships in this tissue. 3. In the presence of suramin (1 mM), responses to Ap5A, Ap4A, AMPPCP, ADP beta S and ADP were abolished or greatly reduced, and contractions induced by AMPCPP, Ap4 and ATP gamma S were inhibited. Contractions induced by MeSATP however, like those induced by ATP itself, were not reduced, but at concentrations above 100 microM were enhanced. In the presence of suramin (1 mM) the order of potency of analogues was therefore AMPCPP = Ap4> ATP = MeSATP> ATP gamma S, with all other analogues tested being essentially inactive at concentrations up to 500 microM.4. Contractile responses of the vas deferens to transmural nerve stimulation (1-50 Hz) in the presence of the alpha-adrenoceptor antagonist, phentolamine (10 microM), were abolished by suramin (1 mM). This is in agreement with previous reports that suramin inhibits the excitatory junction potential, a response thought to be mediated by P2 purinoceptors. It is however hard to reconcile the evidence implicating ATP as the non-adrenergic transmitter responsible for this response with the failure of suramin to inhibit the contractions induced by ATP itself while abolishing nerve-mediated contractions.5. In conclusion, these results confirm our previous findings of a suramin-resistant component to the ATP-induced contraction in the guinea-pig vas deferens, and show that the structure-activity relationships of this response are not identical to those of any known P2-purinoceptor subclass. Although the inhibition by suramin of the breakdown of ATP may contribute to the suramin-resistance of some of the ATP analogues, it does not appear to provide the full explanation.
摘要
  1. 腺苷5'-三磷酸(ATP)及其某些类似物可使豚鼠输精管收缩,通过已被归类为P2X嘌呤受体的受体起作用。然而,我们最近发现,非选择性P2拮抗剂苏拉明可增强而非抑制ATP的作用,并且这种增强难以用苏拉明抑制ATP分解来解释。因此,我们研究了苏拉明对ATP类似物诱导的收缩的影响,以确定苏拉明抗性反应的构效关系。2. 在不存在苏拉明的情况下,ATP类似物的效力顺序为腺苷5'-(α,β-亚甲基)三膦酸酯(AMPCPP)=P1,P5-二腺苷五磷酸(Ap5A)=腺苷5'-四磷酸(Ap4)>腺苷5'-O-(3-硫代三磷酸)(ATPγS)=腺苷酰5'-(β,γ-亚甲基)二膦酸酯(AMPPCP)>P1,P5-二腺苷四磷酸(Ap4A)>腺苷5'-O-(2-硫代二磷酸)(ADPβS)>2-甲硫基腺苷5'-三磷酸(MeSATP)>或=ATP>腺苷5'-二磷酸(ADP)。这与该组织先前报道的构效关系基本一致。3. 在存在苏拉明(1 mM)的情况下,对Ap5A、Ap4A、AMPPCP、ADPβS和ADP的反应被消除或大大降低,并且由AMPCPP、Ap4和ATPγS诱导的收缩受到抑制。然而,由MeSATP诱导的收缩,与由ATP本身诱导的收缩一样,并未降低,但在浓度高于100μM时增强。因此,在存在苏拉明(1 mM)的情况下,类似物的效力顺序为AMPCPP = Ap4>ATP = MeSATP>ATPγS,所有其他测试的类似物在浓度高达500μM时基本无活性。4. 在α-肾上腺素能受体拮抗剂酚妥拉明(10μM)存在下,输精管对跨壁神经刺激(1 - 50 Hz)的收缩反应被苏拉明(1 mM)消除。这与先前的报道一致,即苏拉明抑制兴奋性接头电位,该反应被认为是由P2嘌呤受体介导的。然而,很难将暗示ATP作为负责该反应的非肾上腺素能递质的证据与苏拉明在消除神经介导的收缩的同时未能抑制ATP本身诱导的收缩这一现象相协调。5. 总之,这些结果证实了我们先前的发现,即豚鼠输精管中ATP诱导的收缩存在对苏拉明抗性的成分,并表明该反应的构效关系与任何已知的P2嘌呤受体亚类的构效关系不同。虽然苏拉明对ATP分解的抑制可能有助于某些ATP类似物的苏拉明抗性,但这似乎并不能提供完整的解释。

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