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首页> 外文期刊>European Journal of Pharmacology: An International Journal >The amiodarone derivative 2-methyl-3-(3,5-diiodo-4-carboxymethoxybenzyl)benzofuran (KB130015) opens large-conductance Ca2+-activated K+ channels and relaxes vascular smooth muscle.
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The amiodarone derivative 2-methyl-3-(3,5-diiodo-4-carboxymethoxybenzyl)benzofuran (KB130015) opens large-conductance Ca2+-activated K+ channels and relaxes vascular smooth muscle.

机译:胺碘酮衍生物2-甲基-3-(3,5-二碘-4-羧基甲氧基苄基)苯并呋喃(KB130015)打开大电导的Ca2 +激活的K +通道并舒张血管平滑肌。

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摘要

2-methyl-3-(3,5-diiodo-4-carboxymethoxybenzyl)benzofuran (KB130015) has been developed to retain the antiarrhythmic properties of the parent molecule amiodarone but to eliminate its undesired side effects. In patch-clamp experiments, KB130015 activated large-conductance, Ca2+-activated BK(Ca) channels formed by hSlo1 (alpha) subunits in HEK 293 cells. Channels were reversibly activated by shifting the open-probability/voltage (P(o)/V) relationship by about -60 mV in 3 muM intracellular free Ca2+ ([Ca2+]in). No effect on the single-channel conductance was observed. KB130015-mediated activation of BK(Ca) channels was half-maximal at 20 microM with a Hill coefficient of 2.8. BK(Ca) activation by KB130015 did not require the presence of Ca2+ and still occurred with saturating (100 microM) [Ca2+]in. Effects of the prototypic BK(Ca) activator NS1619 (1,3-dihydro-1-[2-hydroxy-5-(trifluoromethyl)phenyl]-5-(trifluoromethyl)-2 H-benzimidazol-2-one) and those of KB130015 were not additive suggesting that both activators may at least partially share a common mechanism of action. KB130015-mediated activation was observed also for BK(Ca) channels from insects and for human BK(Ca) channels with already profoundly left-shifted voltage-dependence. In contrast, human intermediate conductance Ca2+-activated channels were inhibited by KB130015. Using segments of porcine pulmonary arteries, KB130015 induced endothelium-independent vasorelaxation, half-maximal at 43 microM KB130015. Relaxation was inhibited by 1 mM tetraethylammonium, suggesting that KB130015 can activate vascular smooth muscle type BK(Ca) channels under physiological conditions. Interestingly, the shift in the P(o)/V relationship was considerably stronger (-90 mV in 3 microM [Ca2+]in) for BK(Ca) channels containing Slo-beta1 subunits. Thus, KB130015 belongs to a novel class of BK(Ca) channel openers that exert an effect depending on the subunit composition of the channel complex.
机译:已经开发了2-甲基-3-(3,5-二碘-4-羧基甲氧基苄基)苯并呋喃(KB130015),以保留母体分子胺碘酮的抗心律不齐特性,但消除了其不良副作用。在膜片钳实验中,KB130015激活了HEK 293细胞中由hSlo1(alpha)亚基形成的大电导,Ca2 +激活的BK(Ca)通道。通过在3μM细胞内游离Ca2 +([Ca2 +] in)中将打开概率/电压(P(o)/ V)关系移动约-60 mV,可逆地激活通道。没有观察到对单通道电导的影响。 KB130015介导的BK(Ca)通道的激活在20 microM时最大半峰,希尔系数为2.8。由KB130015激活的BK(Ca)不需要Ca2 +的存在,并且仍然会在饱和(100 microM)[Ca2 +] in的情况下发生。原型BK(Ca)活化剂NS1619(1,3-二氢-1- [2-羟基-5-(三氟甲基)苯基] -5-(三氟甲基)-2 H-苯并咪唑-2-酮)的作用KB130015不是可加性的,表明两种激活剂可能至少部分共享一个共同的作用机制。还观察到昆虫的BK(Ca)通道和已经非常左移的电压依赖性的人BK(Ca)通道的KB130015介导的激活。相比之下,KB130015抑制了人类中间电导Ca2 +激活的通道。使用猪肺动脉段,KB130015诱导了内皮独立性血管舒张,最大值为43 microM KB130015。 1 mM四乙铵可抑制松弛,这表明KB130015在生理条件下可以激活血管平滑肌BK(Ca)型通道。有趣的是,对于包含Slo-beta1亚基的BK(Ca)通道,P(o)/ V关系的移动明显更强(在3 microM [Ca2 +] in中为-90 mV)。因此,KB130015属于一类新的BK(Ca)通道开放剂,其作用取决于通道复合物的亚基组成。

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