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ATP与肌动球蛋白亚片段1结合的瞬态动力学:ATP使肌动球蛋白亚片段1解离导致亚片段1形成新构象的证据。

Transient kinetics of the binding of ATP to actomyosin subfragment 1: evidence that the dissociation of actomyosin subfragment 1 by ATP leads to a new conformation of subfragment 1.

作者信息

Biosca J A, Barman T E, Travers F

出版信息

Biochemistry. 1984 May 22;23(11):2428-36. doi: 10.1021/bi00306a017.

Abstract

The initial steps by which ATP dissociates and binds to actomyosin subfragment 1 (acto-SF-1) were studied. Two techniques were used: stopped-flow (for acto-SF-1 dissociation kinetics) and rapid-flow quench with ATP chase quenching (for ATP binding kinetics). The experiments were carried out in 40% ethylene glycol-5 mM KCI, pH 8, at 15 degrees C. Under these conditions, the binding of SF-1 to actin remains very tight. As with SF-1, the ATP chase technique could be used, first, to titrate active sites and, second, to study the kinetics of ATP binding to acto-SF-1. The kinetic constants obtained were compared with those of SF-1 alone and with the acto-SF-1 dissociation kinetics under identical conditions. The kinetics of the acto-SF-1 dissociation did not vary with the actin to SF-1 ratio, but the ATP binding kinetics did, and a maximum value was reached at a mole ratio of 2.5. At high ATP (100 microM), kdiss = 300 s-1, which compares with 49 s-1 and 13 s-1 for the ATP binding kinetics for acto-SF-1 (actin to SF-1 = 1:1) and SF-1, respectively. As with SF-1, the ATP binding to acto-SF-1 follows a hyperbolic law with the ATP concentration. This suggests a rapid equilibrium (K) followed by an essentially irreversible step (k).(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

研究了ATP与肌动球蛋白亚片段1(肌动蛋白-SF-1)解离和结合的初始步骤。使用了两种技术:停流法(用于肌动蛋白-SF-1解离动力学)和ATP追踪淬灭的快速流动淬灭法(用于ATP结合动力学)。实验在40%乙二醇-5 mM KCl、pH 8、15℃的条件下进行。在这些条件下,SF-1与肌动蛋白的结合仍然非常紧密。与SF-1一样,ATP追踪技术可首先用于滴定活性位点,其次用于研究ATP与肌动蛋白-SF-1结合的动力学。将获得的动力学常数与单独的SF-1以及相同条件下肌动蛋白-SF-1解离动力学的常数进行比较。肌动蛋白-SF-1解离的动力学不随肌动蛋白与SF-1的比例而变化,但ATP结合动力学随比例变化,在摩尔比为2.5时达到最大值。在高ATP(100 microM)时,kdiss = 300 s-1,而肌动蛋白-SF-1(肌动蛋白与SF-1 = 1:1)和SF-1的ATP结合动力学的kdiss分别为49 s-1和13 s-1。与SF-1一样,ATP与肌动蛋白-SF-1的结合遵循ATP浓度的双曲线规律。这表明存在一个快速平衡(K),随后是一个基本不可逆的步骤(k)。(摘要截断于250字)

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