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三磷酸腺苷(ATP)可诱导与肌动蛋白交联的肌球蛋白头部产生微秒级的旋转运动。

ATP induces microsecond rotational motions of myosin heads crosslinked to actin.

作者信息

Svensson E C, Thomas D D

出版信息

Biophys J. 1986 Nov;50(5):999-1002. doi: 10.1016/S0006-3495(86)83541-X.

Abstract

We have used saturation transfer electron paramagnetic resonance (ST-EPR) to study the effect of ATP on the rotational dynamics of spin-labeled myosin heads crosslinked to actin (XLAS1). We have previously shown that ATP induces microsecond rotational motions in activated myofibrils or muscle fibers, but the possibility remained that the motion occurred only in the detached phase of the cross-bridge cycle. The addition of ATP to the crosslinked preparation has been shown to be a model system for active cross-bridges, presumably providing an opportunity to measure the motion in the attached state, without interference from unattached heads. In the absence of ATP, XLAS1 had very little microsecond rotational mobility, yielding a spectrum identical to that observed for uncrosslinked acto-S1. This suggests that all of the labeled S1 forms normal rigor complexes when crosslinked to actin. The addition of 5 mM ATP greatly increased the microsecond rotational mobility of XLAS1, and the effects were reversed upon depletion of ATP. The most plausible explanation for these results is that myosin heads undergo microsecond rotational motion while attached actively to actin during steady state ATPase activity. These results have important implications for the interpretation of spectroscopic data obtained during muscle contraction.

摘要

我们利用饱和转移电子顺磁共振(ST-EPR)来研究ATP对与肌动蛋白交联的自旋标记肌球蛋白头部(XLAS1)旋转动力学的影响。我们之前已经表明,ATP会在活化的肌原纤维或肌肉纤维中诱导微秒级的旋转运动,但仍有可能这种运动仅发生在横桥循环的解离阶段。向交联制剂中添加ATP已被证明是活性横桥的模型系统,大概提供了一个测量附着状态下运动的机会,而不会受到未附着头部的干扰。在没有ATP的情况下,XLAS1几乎没有微秒级的旋转流动性,产生的光谱与未交联的肌动蛋白-S1所观察到的光谱相同。这表明当与肌动蛋白交联时,所有标记的S1都会形成正常的强直复合物。添加5 mM ATP会大大增加XLAS1的微秒级旋转流动性,并且在ATP耗尽时这种影响会逆转。对这些结果最合理的解释是,在稳态ATP酶活性期间,肌球蛋白头部在主动附着于肌动蛋白时会经历微秒级的旋转运动。这些结果对解释肌肉收缩过程中获得的光谱数据具有重要意义。

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