Mylotte K M, Cody V, Davis P J, Davis F B, Blas S D, Schoenl M
Proc Natl Acad Sci U S A. 1985 Dec;82(23):7974-8. doi: 10.1073/pnas.82.23.7974.
We have recently shown that thyroid hormone in physiological concentrations stimulates sarcolemma-enriched rabbit-myocardial-membrane Ca2+-ATPase in vitro. In this study, milrinone [2-methyl-5-cyano-(3,4'-bipyridin)-6(1H)-one], a cardiac inotropic agent, was thyromimetic in the same system. At clinically achievable concentrations (50-500 nM), milrinone significantly stimulated membrane Ca2+-ATPase in vitro. This action was antagonized by W-7 [N-(6-aminohexyl)-5-chloro-1-naphthalenesulfonamide], an agent that also blocks thyroid hormone action on the Ca2+-ATPase, at concentrations as low as 5 microM. Progressive additions of milrinone to membranes incubated with a fixed concentration of thyroxine (0.10 nM) or triiodothyronine resulted in a progressive obliteration of the thyroid hormone effect on Ca2+-ATPase. Amrinone [5-amino-(3,4'-bipyridin)-6(1H)-one], the parent bipyridine of milrinone, had no effect on myocardial Ca2+-ATPase activity. X-ray crystallographic analysis of milrinone and amrinone revealed structural homologies between the phenolic ring of thyroxine and the substituted ring of milrinone, whereas amrinone did not share these homologies. The mechanism(s) of the inotropic actions of thyroxine and of milrinone is not clearly understood, but these observations implicate Ca2+-ATPase, a calcium pump-associated enzyme, as one mediator of the effects on the heart of these two compounds.
我们最近发现,生理浓度的甲状腺激素在体外可刺激富含肌膜的兔心肌膜Ca2 + -ATP酶。在本研究中,强心药米力农[2 - 甲基 - 5 - 氰基 -(3,4'-联吡啶)-6(1H)-酮]在同一系统中具有拟甲状腺激素作用。在临床可达到的浓度(50 - 500 nM)下,米力农在体外能显著刺激膜Ca2 + -ATP酶。低至5 microM的W - 7 [N -(6 - 氨基己基)-5 - 氯 - 1 - 萘磺酰胺]可拮抗这一作用,W - 7也是一种能阻断甲状腺激素对Ca2 + -ATP酶作用的药物。向用固定浓度的甲状腺素(0.10 nM)或三碘甲状腺原氨酸孵育的膜中逐步添加米力农,会导致甲状腺激素对Ca2 + -ATP酶的作用逐渐消失。米力农的母体联吡啶氨力农[5 - 氨基 -(3,4'-联吡啶)-6(1H)-酮]对心肌Ca2 + -ATP酶活性无影响。米力农和氨力农的X射线晶体学分析显示,甲状腺素的酚环与米力农的取代环之间存在结构同源性,而氨力农不具有这些同源性。甲状腺素和米力农的强心作用机制尚不清楚,但这些观察结果表明,Ca2 + -ATP酶(一种与钙泵相关的酶)是这两种化合物对心脏产生作用的一种介质。