首页> 美国卫生研究院文献>The Journal of Physiology >The dependence of force and shortening velocity on substrate concentration in skinned muscle fibres from Rana temporaria.
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The dependence of force and shortening velocity on substrate concentration in skinned muscle fibres from Rana temporaria.

机译:力和缩短速度对林蛙皮肌纤维中底物浓度的依赖性。

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摘要

The force-velocity relation was determined in fully activated skinned fibres from frog muscle at concentrations of the substrate, magnesium adenosine triphosphate (MgATP), ranging from 10 microM to 10 mM. The ionic strength of the solutions was 200 mM, temperature 0-5 degrees C, pH 7.1. The activation procedure of Moisescu (1976) was used to raise the calcium concentration rapidly in the interior of the fibres. A re-phosphorylating system (creatine kinase and creatine phosphate) was used to maintain the MgATP concentration in the fibres. Isotonic releases were performed using a fast servo-controlled motor and tension transducer. Releases to a pre-determined tension level relative to the isometric tension were made using a novel normalizing circuit. In some of the experiments changes of sarcomere length were recorded using the diffraction device described in the preceding paper (Goldman & Simmons, 1984). There was satisfactory agreement between velocities determined from the total length change and the sarcomere length change. The isometric tension showed a biphasic dependence on MgATP concentration. Tension increased with MgATP concentration from 1 microM to reach a peak at about 30-100 microM and decreased by about 20% from the value at the peak with further increase in the MgATP concentration to 5 mM (about the physiological concentration). At 5 mM-MgATP, the isometric tension was approximately the same as in intact fibres, if allowance is made for the increase in cross-sectional area that occurs when the surface membrane is removed. The maximum velocity of shortening, Vmax, was obtained by fitting the force-velocity relation using Hill's (1938) equation. Vmax showed a roughly hyperbolic dependence on MgATP concentration, with a Km of 0.47 mM. At 5 mM-MgATP, the value of Vmax was 2.16 muscle lengths per second, which is similar to that of intact fibres. a/P0, the parameter of Hill's (1938) equation that is related to the curvature of the force-velocity relation, showed a slight decrease with increasing MgATP concentration. Its value at 5 mM-MgATP of 0.16 is somewhat lower than found for intact fibres. The results are discussed in terms of a simple model based on the biochemical cycle of hydrolysis of ATP by actomyosin in solution. The decrease of tension from about 30 microM to higher concentrations of MgATP can be related to the dissociating effect of MgATP on actomyosin. The increase of isometric tension from 1 to 30 microM-MgATP is discussed in terms of two types of rigor attachment of cross-bridges which support different amounts of tension.(ABSTRACT TRUNCATED AT 400 WORDS)
机译:力-速度关系是在蛙皮的完全活化的表皮纤维中以10 microM到10 mM的底物三磷酸腺苷镁(MgATP)的浓度确定的。溶液的离子强度为200 mM,温度为0-5摄氏度,pH为7.1。 Moisescu(1976)的活化程序用于迅速增加纤维内部的钙浓度。使用重磷酸化系统(肌酸激酶和磷酸肌酸)来维持纤维中的MgATP浓度。等渗释放使用快速伺服控制的马达和张力传感器进行。使用新颖的归一化回路释放相对于等轴测张力的预定张力水平。在某些实验中,使用先前论文(Goldman&Simmons,1984)中描述的衍射装置记录了肌节长度的变化。由总长度变化和肌节长度变化确定的速度之间令人满意的一致性。等轴测张力显示出对MgATP浓度的双相依赖性。随着MgATP浓度从1 microM增加到大约30-100 microM的峰值,张力增加,并且随着MgATP浓度进一步增加到5 mM(大约生理浓度),张力降低了大约20%。在5 mM-MgATP下,如果允许去除表面膜时出现的横截面积增加,则等张张力与完整纤维中的张力大致相同。通过使用希尔斯(Hill's(1938))方程拟合力-速度关系,可以得到最大缩短速度Vmax。 Vmax对MgATP浓度表现出近似双曲线的依赖性,Km为0.47 mM。在5 mM-MgATP下,Vmax值为每秒2.16肌肉长度,这与完整纤维的值相似。与力-速度关系的曲率有关的希尔(1938)方程参数a / P0随着MgATP浓度的增加而略有下降。它在5 mM-MgATP处的值为0.16,略低于完整纤维的值。根据基于溶液中肌动球蛋白水解ATP的生物化学循环的简单模型讨论了结果。张力从大约30 microM降低到更高浓度的MgATP可能与MgATP对放线菌素的解离作用有关。等轴测张力从1 microM-MgATP的增加到30 microM-MgATP进行了讨论,两种类型的横梁均支持不同程度的张力。(摘要截断为400个字)

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