Kalappa Bopanna I, Uteshev Victor V
Southern Illinois University School of Medicine, Department of Pharmacology, MC #9629, PO Box 19629, Springfield, IL 62702, United States.
Eur J Pharmacol. 2013 Oct 15;718(1-3):226-34. doi: 10.1016/j.ejphar.2013.08.027. Epub 2013 Sep 11.
PNU-120596 (1-(5-chloro-2,4-dimethoxyphenyl)-3-(5-methylisoxazol-3-yl)urea), a Type-II positive allosteric modulator of α(7) nicotinic acetylcholine receptors inhibits α(7) desensitization and robustly prolongs openings of α(7) channels. However, these effects may render α(7) channels more accessible to positively charged molecules and thus, more susceptible to voltage-dependent open-channel-block-like inhibition. To test this hypothesis, choline chloride (i.e., choline), a selective endogenous α(7) agonist, and bicuculline methochloride (i.e., bicuculline), a competitive α(7) antagonist, were used as membrane voltage-sensitive probes in whole-cell voltage-clamp recordings from hippocampal CA1 interneurons in acute brain slices in the absence and presence of PNU-120596. PNU-120596 enhanced voltage-dependent inhibition of α(7) responses by bicuculline and choline. In the presence of PNU-120596, α(7) channels favored a burst-like kinetic modality in the presence, but not absence of bicuculline and bursts of α(7) openings were voltage-dependent. These results suggest that PNU-120596 alters the pharmacology of α(7) channels by making these channels more susceptible to voltage-dependent inhibitory interactions with positively charged drugs at concentrations that do not potently inhibit α(7) channels without PNU-120596. This inhibition imitates α(7) nicotinic receptor desensitization and compromises the potentiating anti-desensitization effects of PNU-120596 on α(7) nicotinic receptors. This unexpected dual action of PNU-120596, and possibly other Type-II positive allosteric modulators of α(7) nicotinic receptors, may lead to unanticipated α(7) channel-drug interactions and misinterpretation of α(7) single-channel data.
PNU-120596(1-(5-氯-2,4-二甲氧基苯基)-3-(5-甲基异恶唑-3-基)脲),一种α(7)烟碱型乙酰胆碱受体的II型正变构调节剂,可抑制α(7)脱敏并显著延长α(7)通道的开放时间。然而,这些效应可能使α(7)通道更容易被带正电荷的分子接近,因此更容易受到电压依赖性开放通道阻断样抑制。为了验证这一假设,在急性脑片海马CA1中间神经元的全细胞膜片钳记录中,使用氯化胆碱(即胆碱),一种选择性内源性α(7)激动剂,和甲氯异嗪(即异嗪),一种竞争性α(7)拮抗剂,作为膜电压敏感探针,记录有无PNU-120596时的情况。PNU-120596增强了异嗪和胆碱对α(7)反应的电压依赖性抑制。在存在PNU-120596的情况下,α(7)通道在存在异嗪而非不存在异嗪时倾向于爆发样动力学模式,并且α(7)开放的爆发是电压依赖性的。这些结果表明,PNU-120596通过使α(7)通道在没有PNU-120596时不能有效抑制α(7)通道的浓度下,更容易受到与带正电荷药物的电压依赖性抑制相互作用,从而改变α(7)通道的药理学特性。这种抑制模仿了α(7)烟碱型受体脱敏,并损害了PNU-120596对α(7)烟碱型受体的增强抗脱敏作用。PNU-120596的这种意外双重作用,以及可能的其他α(7)烟碱型受体的II型正变构调节剂,可能导致意外的α(7)通道-药物相互作用和对α(7)单通道数据的错误解读。