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通过正弦分析、ATP水解速率及X射线衍射技术研究离子强度对化学去膜兔腰大肌纤维横桥动力学的影响。

Effect of ionic strength on crossbridge kinetics as studied by sinusoidal analysis, ATP hydrolysis rate and X-ray diffraction techniques in chemically skinned rabbit psoas fibres.

作者信息

Kawai M, Wray J S, Güth K

机构信息

Department of Anatomy, University of Iowa, Iowa City 52242.

出版信息

J Muscle Res Cell Motil. 1990 Oct;11(5):392-402. doi: 10.1007/BF01739760.

Abstract

In order to identify which steps in the crossbridge are affected by changes in ionic strength, we studied the effect of ionic strength on the rate constants and magnitudes of three exponential processes, the ATP hydrolysis rate and isometric tension during maximal activation (pCa 4.52, 5 mM MgATP). Equatorial X-ray diffraction measurements were also carried out in both relaxing and rigor conditions to examine whether the distance between thick and thin filaments changes with ionic strength (range: 100-300 mM). All experiments were carried out at 20 degrees C and at pH 7.0 on chemically skinned rabbit psoas muscle fibres. Isometric tension and muscle stiffness declined significantly as the ionic strength was increased from 150 mM to 300 mM. The concomitant decrease in the ATP hydrolysis rate was much less than tension, resulting in a large increase in the tension cost. Three rate constants of exponential processes, deduced from sinusoidal analysis, did not change appreciably. The magnitude parameters of all three processes diminished as the ionic strength was increased. During relaxation the filament spacing increased by 5% when the ionic strength was increased from 150 mM to 300 mM. After rigor induction, the spacing did not change with ionic strength. We conclude that a change in ionic strength modifies the rapid equilibrium between the detached state and the 'weakly attached' state, and that this causes considerable effect on isometric tension. We also conclude that other steps in the crossbridge cycle are less sensitive to ionic strength, and that the lattice spacing change is unable to account for the considerable effect of ionic strength on isometric tension.

摘要

为了确定横桥中的哪些步骤受离子强度变化的影响,我们研究了离子强度对三个指数过程的速率常数和幅度、ATP水解速率以及最大激活状态下(pCa 4.52,5 mM MgATP)的等长张力的影响。还在松弛和僵直条件下进行了赤道X射线衍射测量,以检查粗细肌丝之间的距离是否随离子强度(范围:100 - 300 mM)而变化。所有实验均在20摄氏度和pH 7.0条件下,对化学去膜的兔腰大肌纤维进行。随着离子强度从150 mM增加到300 mM,等长张力和肌肉僵硬度显著下降。ATP水解速率的相应降低远小于张力的降低,导致张力成本大幅增加。从正弦分析推导得出的三个指数过程的速率常数没有明显变化。随着离子强度增加,所有三个过程的幅度参数均减小。在松弛过程中,当离子强度从150 mM增加到300 mM时,肌丝间距增加了5%。在诱导僵直后,间距不随离子强度变化。我们得出结论,离子强度的变化改变了游离状态和“弱附着”状态之间的快速平衡,并且这对等长张力产生了相当大的影响。我们还得出结论,横桥循环中的其他步骤对离子强度不太敏感,并且晶格间距的变化无法解释离子强度对等长张力的相当大的影响。

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