Fukuda N, Fujita H, Fujita T, Ishiwata S
Department of Physics, School of Science and Engineering, Waseda University, 3-4-1 Okubo, Shinjuku-ku, Tokyo 169 Japan.
Pflugers Arch. 1996 Nov-Dec;433(1-2):1-8. doi: 10.1007/s004240050241.
Skinned fibres from bovine ventricles exhibited spontaneous tension oscillations when MgADP and inorganic phosphate (Pi) were added to the solution bathing fibres in the relaxed state (ADP-SPOC). A similar type of oscillation was observed at intermediate concentrations of free Ca2+ in the absence of MgADP and Pi (Ca-SPOC). To investigate the correlation between ADP-SPOC and Ca-SPOC, we constructed two-dimensional state diagrams of cardiac muscle using different concentrations of Pi (0-20 mM) and free Ca2+ [pCa=around 5 (+Ca2+), pCa=5.15-6.9 and +EGTA (-Ca2+)], with varying concentrations of MgADP (0-10 mM), with 2 mM MgATP and 2 mM free Mg2+ maintaining ionic strength at 0.15+/-0.01 M, pH 7.0, 25 degrees C. The three-dimensional (pCa-Pi-MgADP) state diagram thus obtained was divided into three regions, i.e. the contraction region in which tension oscillation was undetectable, the spontaneous tension oscillation (SPOC) region and the relaxation region. We found that the regions of ADP-SPOC and Ca-SPOC were continuously connected by a single oscillation region sandwiched between the contraction and relaxation regions. The state diagram, which encompasses physiological conditions, shows that the probability of SPOC is higher in cardiac muscle than in skeletal muscle. From these results, we suggest that, despite distinct ionic conditions, the molecular state of cross-bridges during SPOC is common to both ADP-SPOC and Ca-SPOC.
当向处于舒张状态的牛心室去表皮肌纤维的灌流液中添加MgADP和无机磷酸盐(Pi)时,这些纤维会出现自发张力振荡(ADP-SPOC)。在无MgADP和Pi的情况下,当游离Ca2+处于中等浓度时也观察到了类似类型的振荡(Ca-SPOC)。为了研究ADP-SPOC和Ca-SPOC之间的相关性,我们构建了心肌的二维状态图,使用不同浓度的Pi(0 - 20 mM)和游离Ca2+[pCa约为5(+Ca2+),pCa = 5.15 - 6.9以及+乙二醇双乙醚四乙酸(EGTA)(-Ca2+)],并改变MgADP的浓度(0 - 10 mM),同时用2 mM MgATP和2 mM游离Mg2+将离子强度维持在0.15±0.01 M,pH 7.0,25℃。由此得到的三维(pCa - Pi - MgADP)状态图被分为三个区域,即未检测到张力振荡的收缩区域、自发张力振荡(SPOC)区域和舒张区域。我们发现,ADP-SPOC区域和Ca-SPOC区域通过夹在收缩区域和舒张区域之间的单个振荡区域连续相连。包含生理条件的状态图表明,心肌中SPOC的概率高于骨骼肌。从这些结果我们推测,尽管离子条件不同,但SPOC期间横桥的分子状态在ADP-SPOC和Ca-SPOC中是相同的。