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BMS-204352对稳定表达于HEK293细胞中的KCNQ5通道的激活作用。

Activation of KCNQ5 channels stably expressed in HEK293 cells by BMS-204352.

作者信息

Dupuis Delphine S, Schrøder Rikke L, Jespersen Thomas, Christensen Jeppe K, Christophersen Palle, Jensen Bo S, Olesen Søren P

机构信息

Department of Medical Physiology, University of Copenhagen, The Panum Institute, 3 Blegdamsvej, DK 2200 Copenhagen N, Denmark.

出版信息

Eur J Pharmacol. 2002 Feb 22;437(3):129-37. doi: 10.1016/s0014-2999(02)01287-6.

Abstract

The novel anti-ischemic compound, BMS-204352 ((3S)-(+)-(5-chloro-2-methoxyphenyl)-1,3-dihydro-3-fluoro-6-(trifluoromethyl)-2H-indol-2-one)), strongly activates the voltage-gated K+ channel KCNQ5 in a concentration-dependent manner with an EC50 of 2.4 microM. At 10 microM, BMS-204352 increased the steady state current at -30 mV by 12-fold, in contrast to the 2-fold increase observed for the other KCNQ channels [Schrøder et al., 2001]. Retigabine ((D-23129; N-(2-amino-4-(4-fluorobenzylamino)-phenyl) carbamic acid ethyl ester) induced a smaller, yet qualitatively similar effect on KCNQ5. Furthermore, BMS-204352 (10 microM) did not significantly shift the KCNQ5 activation curves (threshold and potential for half-activation, V1/2), as observed for the other KCNQ channels. In the presence of BMS-204352, the activation and deactivation kinetics of the KCNQ5 currents were slowed as the slow activation time constant increased up to 10-fold. The M-current blockers, linopirdine (DuP 996; 3,3-bis(4-pyridinylmethyl)-1-phenylindolin-2-one) and XE991 (10,10-bis(4-pyridinylmethyl)-9(10H)-anthracenone), inhibited the activation of the KCNQ5 channel induced by the BMS-204352. Thus, BMS-204352 appears to be an efficacious KCNQ channels activator, and the pharmacological properties of the compound on the KCNQ5 channel seems to be different from what has been obtained on the other KCNQ channels.

摘要

新型抗缺血化合物BMS-204352((3S)-(+)-(5-氯-2-甲氧基苯基)-1,3-二氢-3-氟-6-(三氟甲基)-2H-吲哚-2-酮)以浓度依赖性方式强烈激活电压门控钾通道KCNQ5,其半数有效浓度(EC50)为2.4微摩尔。在10微摩尔浓度下,BMS-204352使-30毫伏时的稳态电流增加了12倍,相比之下,其他KCNQ通道仅增加了2倍[施罗德等人,2001年]。瑞替加滨((D-23129;N-(2-氨基-4-(4-氟苄基氨基)-苯基)氨基甲酸乙酯)对KCNQ5产生的影响较小,但性质相似。此外,与其他KCNQ通道不同,BMS-204352(10微摩尔)并未显著改变KCNQ5的激活曲线(阈值和半数激活电位,V1/2)。在BMS-204352存在的情况下,KCNQ5电流的激活和失活动力学减慢,慢激活时间常数增加了10倍。M电流阻滞剂利诺吡啶(DuP 996;3,3-双(4-吡啶基甲基)-1-苯基吲哚啉-2-酮)和XE991(10,10-双(4-吡啶基甲基)-9(10H)-蒽酮)抑制了BMS-204352诱导的KCNQ5通道激活。因此,BMS-204352似乎是一种有效的KCNQ通道激活剂,该化合物对KCNQ5通道的药理特性似乎与在其他KCNQ通道上所观察到的不同。

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