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A model of stepping kinetics for rotary enzymes. Application to the F1-ATPase

机译:旋转酶的步进动力学模型。在F1-ATPase中的应用

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摘要

Our simple kinetic model, based on the classic "binding change mechanism", describes the stepping kinetics for the rotary enzyme motors. The model shows that the cooperative interactions between active sites in the motor enzyme F1-ATPase induce the stepping product release. This phenomenon results from non-harmonic oscillations in the enzyme forms. The found rate constants, corresponding to the stepping phenomenon, are close to the rate constants known for the F1-ATPase. The duration of dwells during the product release is shown to depend on the ATP concentration in accordance with the known experimental data.
机译:我们基于经典的“结合变化机制”的简单动力学模型描述了旋转酶马达的步进动力学。该模型表明,运动酶F1-ATPase中活性位点之间的协同相互作用诱导了步进产物的释放。这种现象是由于酶形式的非谐波振荡引起的。所发现的对应于步进现象的速率常数接近于F1-ATPase已知的速率常数。根据已知的实验数据,显示产品释放期间的停留时间取决于ATP浓度。

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