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Electrostatic origin of the mechanochemical rotary mechanism and the catalytic dwell of F1-ATPase

机译:机械旋转机理的静电起因和F1-ATPase的催化停留

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摘要

Understanding the nature of energy transduction in life processes requires a quantitative description of the energetics of the conversion of ATP to ADP by ATPases. Previous attempts to do so have provided an interesting insight but could not account for the rotary mechanism by a nonphenomenological structure/energy description. In particular it has been very challenging to account for the observations of the 80° and 40° rotational substates, without any prior information about such states in the simulation procedure. Here we use a coarse-grained model of F1-ATPase and generate, without the adjustment of phenomenological parameters, a structure-based free energy landscape that reproduces the energetics of the mechanochemical process. It is found that the landscape along the relevant rotary path is determined by the electrostatic free energy and not by steric effects. Furthermore, the generated surface and the corresponding Langevin dynamics simulations identify a hidden conformational barrier that provides a new fundamental interpretation of the catalytic dwell and illuminate the nature of the energy conversion process.
机译:要了解生命过程中能量转导的本质,需要对ATPase将ATP转化为ADP的能量进行定量描述。以前这样做的尝试提供了有趣的见解,但无法通过非现象学结构/能量描述来解释旋转机制。尤其是,要在没有模拟过程中有关这些状态的任何先验信息的情况下考虑80°和40°旋转子状态的观察是非常具有挑战性的。在这里,我们使用F1-ATPase的粗粒度模型,并且在不调整现象学参数的情况下,生成了基于结构的自由能态,可再现机械化学过程的能量。发现沿着相关旋转路径的景观是由静电自由能而不是由空间效应决定的。此外,生成的表面和相应的Langevin动力学模拟确定了隐藏的构象障碍,该障碍为催化停留提供了新的基本解释并阐明了能量转换过程的性质。

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