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Contractile effects of the exchange of cardiac troponin for fast skeletal troponin in rabbit psoas single myofibrils

机译:心肌肌钙蛋白交换对兔腰肌单肌原纤维快速肌钙蛋白的收缩作用

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摘要

The effects of the removal of fast skeletal troponin C (fsTnC) and its replacement by cardiac troponin C (cTnC) and the exchange of fast skeletal troponin (fsTn) for cardiac troponin (cTn) were measured in rabbit fast skeletal myofibrils. Electrophoretic analysis of myofibril suspensions indicated that replacement of fsTnC or exchange of fsTn with cTnC or cTn was about 90% complete in the protocols used. Mechanical measurements in single myofibrils, which were maximally activated by fast solution switching, showed that replacement of fsTnC with cTnC reduced the isometric tension, the rate of tension rise following a step increase in Ca2+ (kact), and the rate of tension redevelopment following a quick release and restretch (ktr), but had no effect on the kinetics of the fall in tension when the concentration of inorganic phosphate (Pi) was abruptly increased (kPi(+)). These data suggest that the chimeric protein produced by cTnC replacement in fsTn alters those steps controlling the weak-to-strong crossbridge attachment transition. Inefficient signalling within the chimeric troponin may cause these changes. However, replacement of fsTn by cTn had no effect on maximal isometric tension, kact or ktr, suggesting that these mechanics are largely determined by the isoform of the myosin molecule. Replacement of fsTn by cTn, on the other hand, shifted the pCa50 of the pCa-tension relationship from 5.70 to 6.44 and reduced the Hill coefficient from 3.3 to 1.4, suggesting that regulatory protein isoforms primarily alter Ca2+ sensitivity and the cooperativity of the force-generating mechanism.
机译:在兔子的快速骨骼肌原纤维中,测定了快速骨骼肌钙蛋白C(fsTnC)的去除和心脏肌钙蛋白C(cTnC)的替代以及快速骨骼肌钙蛋白(fsTn)交换心脏肌钙蛋白(cTn)的作用。肌原纤维混悬液的电泳分析表明,在所使用的方案中,用cTnC或cTn替换fsTnC或交换fsTn大约完成了90%。通过快速溶液切换最大程度激活了单个肌原纤维的机械测量结果表明,用cTnC替代fsTnC降低了等轴测张力,Ca 2 + 逐步增加后张力的升高速率(kact) ,以及快速释放和再拉伸(ktr)后张力的重新形成速率,但当无机磷酸盐(Pi)的浓度突然增加(kPi(+))时,对张力下降的动力学没有影响。这些数据表明,在fsTn中由cTnC置换产生的嵌合蛋白改变了控制弱到强横桥连接过渡的那些步骤。嵌合肌钙蛋白内的信号传递效率低下可能会导致这些变化。但是,用cTn替代fsTn对最大等轴测张力,kact或ktr没有影响,表明这些机制很大程度上取决于肌球蛋白分子的同工型。另一方面,用cTn替代fsTn,使pCa张力关系的pCa50从5.70变为6.44,Hill系数从3.3降低到1.4,这表明调节蛋白亚型主要改变了Ca 2 + 力生成机制的敏感性和协同性。

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