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心肌肌膜囊泡中钠钙交换的抑制作用。2. 苄普地尔的抑制机制。

Inhibition of sodium-calcium exchange in cardiac sarcolemmal membrane vesicles. 2. Mechanism of inhibition by bepridil.

作者信息

Garcia M L, Slaughter R S, King V F, Kaczorowski G J

机构信息

Department of Biochemistry, Merck Institute for Therapeutic Research, Rahway, New Jersey 07065.

出版信息

Biochemistry. 1988 Apr 5;27(7):2410-5. doi: 10.1021/bi00407a024.

Abstract

Bepridil, an antiarrhythmic agent, inhibits Na-Ca exchange in cardiac sarcolemmal membrane vesicles (Ki = 30 microM) by a novel mechanism, different from that determined for amiloride analogues [Slaughter, R. S., Garcia, M. L., Cragoe, E. J., Jr., Reeves, J. P., & Karczorowski, G. J. (1988) Biochemistry (preceding paper in this issue)]. Bepridil causes partial inhibition of Nai-dependent Ca2+ uptake but complete block of Nao-dependent Ca2+ efflux. Inhibition of Na-Ca exchange is noncompetitive vs Ca2+ but competitive vs Na+ in both K+ and sucrose. Bepridil also blocks Ca-Ca exchange, with or without K+ present. However, K+ has two effects on inhibition: it reduces the potency of bepridil and causes inhibition to become partial. Inhibition of Ca-Ca exchange displays noncompetitive kinetics vs Ca2+ in either sucrose or K+. Dixon analyses of Na-Ca exchange inhibition caused by mixtures of bepridil and amiloride analogues demonstrate that these compounds produce a competitive interaction at a common carrier site that is evident only at low concentrations of amiloride inhibitors. Hill plots of bepridil inhibition of Na-Ca and Ca-Ca exchange display unitary Hill coefficients. These results indicate that bepridil interacts at only one substrate-binding site, the site selective for Na+, where amiloride analogues also preferentially interact. However, unlike amiloride, bepridil does not interact at the common Na+, Ca2+-binding site of the carrier.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

苄普地尔是一种抗心律失常药物,它通过一种新机制抑制心肌肌膜囊泡中的钠钙交换(Ki = 30 microM),这种机制不同于对氨氯地平类似物所确定的机制[斯劳特,R.S.,加西亚,M.L.,克拉戈伊,E.J.,小,里夫斯,J.P.,&卡尔佐罗夫斯基,G.J.(1988年)《生物化学》(本期前一篇论文)]。苄普地尔导致对钠内流依赖性钙摄取的部分抑制,但完全阻断钠外流依赖性钙外流。钠钙交换的抑制在钾离子和蔗糖存在时对钙离子是非竞争性的,但对钠离子是竞争性的。苄普地尔也阻断钙钙交换,无论有无钾离子存在。然而,钾离子对抑制有两种作用:它降低了苄普地尔的效力并使抑制变为部分性。在蔗糖或钾离子存在下,钙钙交换的抑制对钙离子显示非竞争性动力学。对苄普地尔和氨氯地平类似物混合物引起的钠钙交换抑制的迪克森分析表明,这些化合物在一个共同的载体位点产生竞争性相互作用,这仅在低浓度的氨氯地平抑制剂时才明显。苄普地尔对钠钙和钙钙交换抑制的希尔图显示单一的希尔系数。这些结果表明,苄普地尔仅在一个底物结合位点相互作用,即对钠离子有选择性的位点,氨氯地平类似物也优先在此相互作用。然而,与氨氯地平不同,苄普地尔不在载体的共同钠、钙结合位点相互作用。(摘要截短至250字)

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