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由ATP光释放诱导的收缩开始时肌肉僵硬度上升的时间进程。

Time course of rise of muscle stiffness at onset of contraction induced by photorelease of ATP.

作者信息

Horiuti K, Sakoda T, Yamada K

机构信息

Department of Physiology, Oita Medical University, Japan.

出版信息

J Muscle Res Cell Motil. 1992 Dec;13(6):685-91. doi: 10.1007/BF01738257.

Abstract

Isometric contraction (9-10 degrees C) of skinned fibres from rat psoas muscle was elicited by photorelease of ATP (1.3-1.4 mM), and force (F), in-phase (I) and quadrature (Q) stiffness were monitored. The sinusoidal length change for the stiffness measurement was approximately 0.09% fibre length and 200-1000 Hz. On photolysis, F and I initially fell, and then rose. The half-time of the rise of I was shorter than that of F. Contrary to the previous assumption, Q rose even earlier than I. Although the time courses of the rise of F and I were greatly affected by the presence of phosphate ion (Pi; 4 mM), its effect on Q was modest. We propose the following hypothesis: the rigor crossbridges, after binding ATP, initially enter a state characterized by high Q with low I and none or little F, and then, releasing Pi during passing the state with the increased I, reach the final force generating state.

摘要

通过光释放ATP(1.3 - 1.4 mM)引发大鼠腰大肌去皮肤纤维的等长收缩(9 - 10摄氏度),并监测力(F)、同相(I)和正交(Q)刚度。用于刚度测量的正弦长度变化约为纤维长度的0.09%,频率为200 - 1000 Hz。光解时,F和I最初下降,然后上升。I上升的半衰期比F短。与先前的假设相反,Q甚至比I更早上升。尽管F和I上升的时间进程受到磷酸根离子(Pi;4 mM)存在的极大影响,但其对Q的影响较小。我们提出以下假设:强直横桥在结合ATP后,最初进入一种以高Q、低I且无或几乎无力F为特征的状态,然后,在通过I增加的状态时释放Pi,达到最终产生力的状态。

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