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首页> 外文期刊>Nature Communications >Biased Brownian stepping rotation of FoF1-ATP synthase driven by proton motive force.
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Biased Brownian stepping rotation of FoF1-ATP synthase driven by proton motive force.

机译:质子动力驱动的FoF1-ATP合酶的有偏布朗步进旋转。

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FoF1-ATP synthase (FoF1) produces most of the ATP in cells, uniquely, by converting the proton motive force (pmf) into ATP production via mechanical rotation of the inner rotor complex. Technical difficulties have hampered direct investigation of pmf-driven rotation, which are crucial to elucidating the chemomechanical coupling mechanism of FoF1. Here we develop a novel supported membrane system for direct observation of the rotation of FoF1 driven by pmf that was formed by photolysis of caged protons. Upon photolysis, FoF1 initiated rotation in the opposite direction to that of the ATP-driven rotation. The step size of pmf-driven rotation was 120, suggesting that the kinetic bottleneck is a catalytic event on F1 with threefold symmetry. The reaction equilibrium was slightly biased to ATP synthesis like under physiological conditions, and FoF1 showed highly stochastic behaviour, frequently making a 120 backward step. This new experimental system would be applicable to single-molecule study of other membrane proteins.Registry Number/Name of Substance 0 (Protons). EC 3-6-3-14 (Proton-Translocating ATPases).
机译:FoF1-ATP合酶(FoF1)通过内转子复合体的机械旋转将质子动力(pmf)转换为ATP,从而独特地产生细胞中的大多数ATP。技术难题阻碍了对pmf驱动的旋转的直接研究,这对于阐明FoF1的化学机械耦合机制至关重要。在这里,我们开发了一种新型的支持膜系统,用于直接观察由笼型质子的光解形成的pmf驱动的FoF1的旋转。光解后,FoF1开始以与ATP驱动的旋转相反的方向旋转。 pmf驱动旋转的步长为120,这表明动力学瓶颈是F1具有三重对称性的催化事件。像在生理条件下一样,反应平衡稍微偏向ATP合成,FoF1表现出高度随机的行为,经常会向后退120。这个新的实验系统将适用于其他膜蛋白的单分子研究。注册号/物质0的名称(质子)。 EC 3-6-3-14(质子转运ATPase)。

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