Kihara Y, Inoko M, Sasayama S
Second Department of Internal Medicine, Toyama Medical and Pharmaceutical University School of Medicine, Japan.
Circ Res. 1995 Jul;77(1):80-7. doi: 10.1161/01.res.77.1.80.
L-Methionine is an essential amino acid that has been reported to have a potent positive inotropic effect on the mammalian myocardium. We studied the mechanisms of the inotropic effect in ventricular myocardium from the rabbit. In the isolated coronary-perfused whole heart, L-methionine in a millimolar range exerted concentration-dependent positive inotropic effects on the isovolumic left ventricle, which were associated with negative lusitropic effects (prolonged time course of relaxation). The chronotropic state and the coronary perfusion pressure were not affected. These complex effects on the isolated whole heart were not blocked by pretreatment with (mumol/L) propranolol 1, prazosin 1, carbachol 3, staurosporine 1, or [Ser1,Ile8]angiotensin II 0.1. To further study the subcellular mechanisms, isolated ventricular papillary muscles from the same species were loaded with a bioluminescent indicator, aequorin, to monitor [Ca2+]i. In the presence of 3 mmol/L L-methionine, the isometric tension showed a similar combination of the positive inotropic and negative lusitropic effects as observed in the whole heart. In contrast, the simultaneously recorded intracellular Ca2+ signals did not increase in amplitude but instead decreased. The [Ca2+]i-tension relation shifted to the left compared with that obtained in response to [Ca2+]o. In saponin (250 micrograms/mL)-treated skinned preparations, 3 mmol/L L-methionine also shifted the force-pCa curve to the left by 0.16 pCa units. This is the first demonstration that an essential amino acid directly acts on the myofilaments and modulates their responsiveness to Ca2+, thereby producing a positive inotropic effect.
L-蛋氨酸是一种必需氨基酸,据报道它对哺乳动物心肌具有强大的正性肌力作用。我们研究了兔心室肌中这种正性肌力作用的机制。在离体冠状动脉灌注的全心模型中,毫摩尔浓度范围的L-蛋氨酸对等容左心室产生浓度依赖性的正性肌力作用,同时伴有负性变松弛作用(舒张时间延长)。心率状态和冠状动脉灌注压未受影响。用1 μmol/L普萘洛尔、1 μmol/L哌唑嗪、3 μmol/L卡巴胆碱、1 μmol/L星形孢菌素或0.1 μmol/L [Ser1,Ile8]血管紧张素II预处理,均不能阻断这些对离体全心的复杂作用。为进一步研究亚细胞机制,我们用生物发光指示剂水母发光蛋白加载来自同一物种的离体心室乳头肌,以监测细胞内钙离子浓度([Ca2+]i)。在存在3 mmol/L L-蛋氨酸的情况下,等长张力显示出与在全心模型中观察到的类似的正性肌力和负性变松弛作用的组合。相反,同时记录的细胞内钙离子信号幅度并未增加,反而减小。与因细胞外钙离子浓度([Ca2+]o)升高而获得的[Ca2+]i-张力关系相比,[Ca2+]i-张力关系向左移位。在经250 μg/mL皂角苷处理的脱细胞标本中,3 mmol/L L-蛋氨酸也使力-pCa曲线向左移位0.16个pCa单位。这首次证明了一种必需氨基酸可直接作用于肌丝并调节其对钙离子的反应性,从而产生正性肌力作用。