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低渗溶液中青蛙骨骼肌的能量学与力学

Energetics and mechanics of frog skeletal muscle in hypotonic solution.

作者信息

Burchfield D M, Rall J A

出版信息

Am J Physiol. 1986 Jul;251(1 Pt 1):C66-71. doi: 10.1152/ajpcell.1986.251.1.C66.

Abstract

Hypotonic solutions are known to potentiate muscle force production and increase actomyosin ATPase activity in solution. As such, both the rate and amount of ATP hydrolysis should increase during contraction. This was tested indirectly by measuring force and energy liberation in Rana pipiens semitendinosus muscles at 0 degrees C in hypotonic solution. Force and the amount and rate of energy liberation increased. This increase is consistent with the interpretation that the rate of ATP hydrolysis is increased in hypotonic solution. Muscles, stretched to beyond myofilament overlap, liberate a substantial fraction of the energy liberated at maximal myofilament overlap. This energy liberation, the activation heat, is thought to reflect the energy utilized to cycle Ca2+. Hypotonic solution decreased the amplitude and the rate of the activation heat, suggesting that the amount and rate of Ca2+ cycled by the sarcoplasmic reticulum is reduced. Thus in hypotonic solution, force production and the rate of ATP hydrolysis by the cross bridges are potentiated despite an apparent decrease in Ca2+ cycling.

摘要

已知低渗溶液可增强肌肉力量产生,并增加溶液中的肌动球蛋白ATP酶活性。因此,在收缩过程中,ATP水解的速率和量都应增加。通过在0摄氏度的低渗溶液中测量豹蛙半腱肌的力量和能量释放,间接对此进行了测试。力量以及能量释放的量和速率均增加。这种增加与以下解释一致,即低渗溶液中ATP水解速率增加。肌肉被拉伸至肌丝重叠范围之外时,释放出的能量中有很大一部分是在最大肌丝重叠时释放的。这种能量释放,即激活热,被认为反映了用于使Ca2+循环所利用的能量。低渗溶液降低了激活热的幅度和速率,表明肌浆网使Ca2+循环的量和速率降低。因此,在低渗溶液中,尽管Ca2+循环明显减少,但横桥的力量产生和ATP水解速率仍会增强。

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