首页> 美国卫生研究院文献>The Journal of Physiology >Neuronal nicotinic alpha 7 receptor expressed in Xenopus oocytes presents five putative binding sites for methyllycaconitine.
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Neuronal nicotinic alpha 7 receptor expressed in Xenopus oocytes presents five putative binding sites for methyllycaconitine.

机译:在非洲爪蟾卵母细胞中表达的神经元烟碱α7受体呈现了五个假定的甲基lycaconititine结合位点。

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摘要

1. The recently isolated compound methyllycaconitine (MLA) is a plant toxin which is a competitive inhibitor of nicotinic acetylcholine receptors (nAChRs). We found that homomeric alpha 7 receptors display a very high sensitivity to MLA with an IC50 in the picomolar range. 2. The competitive nature of the alpha 7 MLA blockade was reinforced by the observation that this compound has no action on wild-type serotoninergic receptors (5-HT3), whereas it is a powerful antagonist of chimaeric receptors alpha 7-5-HT3. 3. The time course of MLA inhibition of the wild-type (WT) alpha 7 follows a monotonic exponential decay whose time constant is proportional to the MLA concentration and could be described by a bimolecular mechanism with a forward rate constant (k+) of 2.7 x 10(7) S-1 M-1. In contrast, recovery from MLA inhibition displays an S-shaped time course that is incompatible with a simple bimolecular reaction. 4. Given the pentameric nature of the neuronal nicotinic receptors, a linear chain model, including five putative MLA binding sites corresponding to the homomeric nature of alpha 7, is proposed. 5. Both onset and recovery data obtained on the alpha 7 wild-type receptor are adequately described by this model assuming that a single MLA molecule is sufficient to block receptor function. 6. Analysis of MLA blockade and recovery of reconstituted heteromeric alpha 4 beta 2 receptors reveals, as expected, a time course compatible with only two binding sites for the toxin and, thus, further supports the validity of our model.
机译:1.最近分离出的化合物甲基lycaconitine(MLA)是一种植物毒素,是一种烟碱乙酰胆碱受体(nAChRs)的竞争性抑制剂。我们发现同型α7受体对MLA具有很高的敏感性,IC50在皮摩尔范围内。 2.观察到该化合物对野生型5-羟色胺能受体(5-HT3)无作用,而它是嵌合受体α7-5-HT3的强力拮抗剂,这一发现增强了α7MLA阻断的竞争性。 3. MLA抑制野生型(WT)alpha 7的时间过程遵循单调指数衰减,其时间常数与MLA浓度成正比,并且可以通过双分子机制描述,前向速率常数(k +)为2.7 x 10(7)S-1 M-1。相反,从MLA抑制中恢复会显示出与简单的双分子反应不相容的S形时程。 4.鉴于神经元烟碱样受体的五聚体性质,提出了一个线性链模型,包括五个假定的MLA结合位点,它们对应于α7的同质性。 5.假设单个MLA分子足以阻断受体功能,则该模型足以描述在alpha 7野生型受体上获得的发作和恢复数据。 6.对MLA阻滞的分析和重构的异聚α4β2受体的回收显示,正如所预期的,时程仅与毒素的两个结合位点兼容,因此进一步支持了我们模型的有效性。

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