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首页> 外文期刊>European Journal of Pharmacology: An International Journal >Pharmacological characterization of zinc and copper interaction with the human alpha(1A)-adrenoceptor.
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Pharmacological characterization of zinc and copper interaction with the human alpha(1A)-adrenoceptor.

机译:锌和铜与人alpha(1A)-肾上腺素受体相互作用的药理学表征。

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摘要

Metal ions have a major role in human health, and interact with many classes of receptors including the G-protein coupled receptors. In the peripheral system, zinc mainly accumulates in the soft prostate organ and, with copper, influences prostate disease progression, from normal to hypertrophic or cancerous states. The development of these pathologies may be influenced by the alpha(1A)-adrenoceptor, the principal regulator of prostate tonicity. There is currently no information on possible interactions between metals and the alpha(1A)-adrenoceptor. We therefore studied the effects of several mono- and divalent ions on this receptor subtype using binding and functional experiments performed on expressed cloned human alpha(1A)-adrenoceptor. Regardless of the counter anion used, Zn(2+) and Cu(2+) interact with alpha(1A)-adrenoceptor with apparent affinities in the low micromolar range. In addition, using specific binding experiments, we established that these ions acted as negative allosteric ligands on prazosin/alpha(1A)-adrenoceptor interaction, but in a different manner from the allosteric modulator 5-(N-ethyl-N-isopropyl)-amiloride, suggesting distinct mode of interaction. In addition, the presence of Cu(2+) weakly decreased epinephrine affinity, whereas the addition of Zn(2+) shifted to the left the epinephrine binding curve, revealing a positive allosteric effect but only on half of the binding site. Finally, cell-based functional experiments demonstrated that Zn(2+) and Cu(2+) antagonized epinephrine activation in an insurmountable manner, by reducing agonist efficacy without any shift in the epinephrine activation curves. This study shows the interactions between metal ions and the alpha(1A)-adrenoceptor with affinities compatible with physiological concentrations and suggests that zinc and copper may have a biological role in prostate function.
机译:金属离子在人类健康中起着重要作用,并与包括G蛋白偶联受体在内的许多受体相互作用。在周围系统中,锌主要在软的前列腺器官中积累,并与铜一起影响从正常状态到肥大或癌变状态的前列腺疾病的进展。这些病理学的发展可能受到α(1A)-肾上腺素受体(前列腺张力的主要调节剂)的影响。目前尚无有关金属与α(1A)-肾上腺素受体之间可能相互作用的信息。因此,我们使用对表达的克隆人alpha(1A)-肾上腺素受体进行的结合和功能实验研究了几种单价和二价离子对该受体亚型的影响。无论使用哪种抗衡阴离子,Zn(2+)和Cu(2+)都可以在低微摩尔范围内以明显的亲和力与α(1A)-肾上腺素受体相互作用。此外,使用特异性结合实验,我们确定这些离子在prazosin / alpha(1A)-肾上腺素受体相互作用中充当负变构配体,但与变构调节剂5-(N-乙基-N-异丙基)-的作用方式不同阿米洛利,表明不同的相互作用方式。此外,Cu(2+)的存在弱弱地降低肾上腺素的亲和力,而Zn(2+)的添加向左移至肾上腺素结合曲线的左侧,显示出积极的变构作用,但仅对结合位点的一半有效。最后,基于细胞的功能实验表明Zn(2+)和Cu(2+)以不可克服的方式拮抗肾上腺素的激活,方法是降低激动剂的功效而不会改变肾上腺素的激活曲线。这项研究表明金属离子和具有与生理浓度相容的亲和力的α(1A)-肾上腺素受体之间的相互作用,并表明锌和铜可能在前列腺功能中具有生物学作用。

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