Kuhlmann J, Okonjo K O, Maelicke A
Institute of Physiological Chemistry, Johannes-Gutenberg University Medical School, Mainz, Germany.
FEBS Lett. 1991 Feb 25;279(2):216-8. doi: 10.1016/0014-5793(91)80152-s.
The reversible acetylcholine esterase inhibitor (-)-physostigmine (eserine) is the prototype of a new class of nicotinic acetylcholine receptor (nAChR) activating ligands: it induces cation fluxes into nAChR-rich membrane vesicles from Torpedo marmorata electric tissue even under conditions of antagonist blocked acetylcholine binding sites (Okonjo, Kuhlmann, Maelicke, Neuron, in press). This suggests that eserine exerts its channel-activating property via binding sites at the nAChR separate from those of the natural transmitter. We now report that eserine can activate the channel even when the receptor has been preincubated (desensitized) with elevated concentrations of acetylcholine. Thus the conformational state of the receptor corresponding to desensitization is confined to the transmitter binding region, leaving the channel fully activatable-albeit only from other than the transmitter binding site(s).
可逆性乙酰胆碱酯酶抑制剂(-)-毒扁豆碱(依色林)是一类新型烟碱型乙酰胆碱受体(nAChR)激活配体的原型:即使在拮抗剂阻断乙酰胆碱结合位点的情况下,它也能诱导阳离子流入来自电鳐电组织的富含nAChR的膜囊泡中(奥孔乔、库尔曼、梅利克,《神经元》,即将发表)。这表明依色林通过与天然递质不同的nAChR结合位点发挥其通道激活特性。我们现在报告,即使受体已经用高浓度的乙酰胆碱进行了预孵育(脱敏),依色林仍能激活通道。因此,对应于脱敏的受体构象状态仅限于递质结合区域,使通道完全可激活——尽管只能从递质结合位点以外的位点激活。