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首页> 外文期刊>Biochemistry >On the mechanism of inhibition of the nicotinic acetylcholine receptor by the anticonvulsant MK-801 investigated by laser-pulse photolysis in the microsecond-to-millisecond time region.
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On the mechanism of inhibition of the nicotinic acetylcholine receptor by the anticonvulsant MK-801 investigated by laser-pulse photolysis in the microsecond-to-millisecond time region.

机译:在微秒至毫秒时间范围内,通过激光脉冲光解研究了抗惊厥药MK-801对烟碱乙酰胆碱受体的抑制作用机理。

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摘要

The mechanism of inhibition of the muscle nicotinic acetylcholine receptor is of interest because of the many drugs which are known to modify its function. The laser-pulse photolysis technique, using a photolabile, biologically inert ligand (caged carbamoylcholine) for the nicotinic acetylcholine receptor, and BC3H1 cells have been used to investigate the mechanism of inhibition of the receptor by MK-801 [(+)-dizocilpine] in the microsecond-to-millisecond time region. MK-801 is an anticonvulsant and a known inhibitor of the N-methyl-D-aspartate and nicotinic acetylcholine receptors. Both the chemical kinetic and the single-channel current-recording measurements reported here indicate the existence of two inhibition processes, one occurring within 50 ms and the other within about 1 s of equilibration of the receptor with the inhibitor. Unless stated otherwise, here we characterize the receptor inhibition observed when MK-801 is equilibrated with the receptor for only 50 ms. We determined the effect of MK-801 on the concentration of the open receptor-channels and the apparent dissociation constant of the inhibitor from the closed-channel (KI(obs) = 180 microM) and open-channel ( = 950 microM) forms. Within a few milliseconds after inhibitor binding, decreases to about 100 microM, due to an inhibitor-induced isomerization to an inactive receptor form. A mechanism that incorporates the new results is proposed. It includes the formation of an ion-conducting receptor:inhibitor complex with a channel-opening equilibrium constant that is unfavorable compared to the open-channel receptor form in the absence of inhibitor. In the MK-801 concentration range of 0-500 microM, this mechanism accounts for the observed MK-801-induced decrease in the concentration of open channels. At high concentrations of carbamoylcholine, when the receptor is mainly in the open-channel form, the conducting receptor:inhibitor complex isomerizes to a nonconducting state with a rate constant of about 2400 s-1 for the forward reaction and 230 s-1 for the back reaction. It is shown that the proposed new mechanism, based on transient kinetic measurements, also accounts for the results of previous investigations with other inhibitors (procaine, cocaine), which were carried out under both pre-steady-state and equilibrium conditions. A compound that binds to the same regulatory site on the receptor as MK-801 but does not affect the channel-opening equilibrium constant may have considerable use in protecting an organism from the effects of abused drugs.
机译:抑制肌肉烟碱乙酰胆碱受体的机制是令人关注的,因为已知许多药物会改变其功能。激光脉冲光解技术使用对光不稳定的生物惰性配体(笼中的氨基甲酰胆碱)用于烟碱乙酰胆碱受体,而BC3H1细胞已用于研究MK-801 [(+)-二唑西平]抑制该受体的机制。在微秒到毫秒的时间范围内。 MK-801是抗惊厥药,是N-甲基-D-天冬氨酸和烟碱乙酰胆碱受体的已知抑制剂。此处报道的化学动力学和单通道电流记录测量均表明存在两种抑制过程,一种发生在50 ms内,另一种发生在受体与抑制剂平衡后约1 s内。除非另有说明,否则本文将表征当MK-801与受体仅平衡50毫秒时观察到的受体抑制作用。我们确定了MK-801对开放受体通道浓度和抑制剂从封闭通道(KI(obs)= 180 microM)和开放通道(= 950 microM)形式的表观解离常数的影响。在抑制剂结合后的几毫秒内,由于抑制剂诱导的异构化为无活性的受体形式,降低至约100 microM。提出了一种结合新结果的机制。它包括形成离子传导受体:抑制剂复合物,该化合物的通道开放平衡常数与不存在抑制剂时的开放通道受体形式相比是不利的。在0-500 microM的MK-801浓度范围内,此机制解释了观察到的MK-801引起的明渠浓度降低。在高浓度的氨甲酰胆碱中,当受体主要为明渠形式时,传导性受体:抑制剂复合物会异构化为非传导状态,正向反应的速率常数约为2400 s-1,反之为230 s-1逆反应。结果表明,基于瞬态动力学测量结果提出的新机理,也考虑了以前在稳态和平衡条件下使用其他抑制剂(普鲁卡因,可卡因)的研究结果。与MK-801结合在受体上相同调控位点但不影响通道开放平衡常数的化合物可能在保护有机体免受滥用药物的影响方面具有重要用途。

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