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首页> 外文期刊>Naunyn-Schmiedeberg's Archives of Pharmacology >Interaction of Mg2+ with the allosteric site of muscarinic M2 receptors.
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Interaction of Mg2+ with the allosteric site of muscarinic M2 receptors.

机译:Mg2 +与毒蕈碱M2受体的变构位点的相互作用。

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摘要

Mg2+-ions have been suspected to attenuate the inhibitory effect of allosteric modulators on the dissociation of orthosteric ligands from muscarinic M2 receptors. It was aimed to gain more insight into the molecular events underlying the effect of Mg2+. The interaction of Mg2+ with the allosteric model compounds W84 (hexane-1,6-bis [dimethyl-3'-phthalimidopropylammonium bromide]) and Chin3/6 (hexane-1 ,6-bis[dimethyl-3'-{4-oxo-2-phenyl-3,4-dihydro-2H-quinazolin-1-yl propylammonium bromide]) was studied in porcine heart muscarinic receptors, the primary binding site of which was occupied by the ligand [3H]N-methylscopolamine ([3H]NMS). The incubation buffer was composed of 4 mM Na2HPO4 and 1 mM KH2PO4 (pH 7.4, 23 degrees C). The retardation of [3H]NMS dissociation (control t1/2=5.6 min) induced by the allosteric test compounds was diminished by 3 mM Mg2+ to a greater extent than to be expected with regard to its contribution to the ionic strength of the buffer solution. Concentration-effect curves for the allosteric retardation of [3H]NMS dissociation by W84 (half maximal effective concentration EC0.5=24 nM in the absence of Mg2+) and by Chin3/6 (EC0.5=28 nM) were shifted by Mg2+ to the right in a parallel fashion. The curve-shift was compatible with a competitive interplay between Mg2+ and the modulators. The pKb-values as a measure of the antagonistic potency of Mg2+, however, differed depending on the modulator, i.e. pKb=3.4 with W84 and pKb=2.8 with Chin3/6. Mg2+ itself was capable of slowing the dissociation of [3H]NMS; the maximal retardation of [3H]NMS dissociation was about 3 fold, the concentration-effect relationship was compatible with a two-site model using the above-mentioned pKb-values as affinity constants. Since the equilibrium-binding of [3H]NMS remained unchanged up to a Mg2+-concentration of 3 mM, the cation appears to inhibit the association and dissociation of [3H]NMS to the same extent in this concentration range. Taken together, the findings indicate that Mg2+ may bind to the allosteric region of muscarinic M2 receptors and that more than one site is involved in this interaction. The sites of action may represent divalent cation binding sites.
机译:怀疑Mg2 +离子会减弱变构调节剂对正构配体从毒蕈碱M2受体解离的抑制作用。目的是为了更深入地了解Mg2 +效应潜在的分子事件。 Mg2 +与变构模型化合物W84(己烷-1,6-双[二甲基-3'-邻苯二甲酰亚胺丙基溴化铵])和Chin3 / 6(己烷-1,6-双[二甲基-3'-{4-氧代]的相互作用在猪心脏毒蕈碱受体中研究了-2-苯基-3,4-二氢-2H-喹唑啉-1-基丙基溴化铵],其主要结合位点被配体[3H] N-甲基东pol碱([3H] ] NMS)。孵育缓冲液由4 mM Na2HPO4和1 mM KH2PO4(pH 7.4,23摄氏度)组成。变构受试化合物引起的[3H] NMS解离阻滞作用(对照t1 / 2 = 5.6分钟)被3 mM Mg2 +减小的程度大于其对缓冲溶液离子强度的影响。 。通过W84(在没有Mg2 +的情况下,最大最大有效浓度EC0.5 = 24 nM)和通过Chin3 / 6(EC0.5 = 28 nM)的[3H] NMS离解变构延迟的浓度效应曲线移动了Mg2 +以并行方式移至右侧。曲线偏移与Mg2 +和调制器之间的竞争相互作用兼容。然而,pKb值作为Mg2 +拮抗效力的量度因调节剂而异,即W84时pKb = 3.4,Chin3 / 6时pKb = 2.8。 Mg2 +本身能够减慢[3H] NMS的解离。 [3H] NMS解离的最大延迟约为3倍,使用上述pKb值作为亲和常数,浓度-效应关系与两点模型兼容。由于直到3 mM的Mg2 +浓度,[3H] NMS的平衡结合仍保持不变,因此该阳离子似乎在该浓度范围内以相同程度抑制[3H] NMS的缔合和解离。两者合计,这些发现表明,Mg2 +可能与毒蕈碱型M2受体的变构区结合,并且这种相互作用涉及多个位点。作用位点可以代表二价阳离子结合位点。

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