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Domain compliance and elastic power transmission in rotary FOF1-ATPase

机译:旋转FOF1-ATPase中的域顺应性和弹性动力传递

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摘要

The 2 nanomotors of rotary ATP synthase, ionmotive FO and chemically active F1, are mechanically coupled by a central rotor and an eccentric bearing. Both motors rotate, with 3 steps in F1 and 10–15 in FO. Simulation by statistical mechanics has revealed that an elastic power transmission is required for a high rate of coupled turnover. Here, we investigate the distribution in the FOF1 structure of compliant and stiff domains. The compliance of certain domains was restricted by engineered disulfide bridges between rotor and stator, and the torsional stiffness (κ) of unrestricted domains was determined by analyzing their thermal rotary fluctuations. A fluorescent magnetic bead was attached to single molecules of F1 and a fluorescent actin filament to FOF1, respectively. They served to probe first the functional rotation and, after formation of the given disulfide bridge, the stochastic rotational motion. Most parts of the enzyme, in particular the central shaft in F1, and the long eccentric bearing were rather stiff (torsional stiffness κ > 750 pNnm). One domain of the rotor, namely where the globular portions of subunits γ and ε of F1 contact the c-ring of FO, was more compliant (κ ≅ 68 pNnm). This elastic buffer smoothes the cooperation of the 2 stepping motors. It is located were needed, between the 2 sites where the power strokes in FO and F1 are generated and consumed.
机译:旋转ATP合酶的2个纳米马达,离子动力FO和化学活性F1,由中央转子和偏心轴承机械耦合。两个电动机都旋转,在F1中以3步步进,在FO中以10-15步进。统计力学的仿真表明,高耦合周转率需要弹性动力传递。在这里,我们研究了顺应性域和刚性域在FOF1结构中的分布。某些区域的顺应性受到转子和定子之间设计的二硫键的限制,并且通过分析其热旋转波动来确定非限制区域的扭转刚度(κ)。荧光磁珠分别附着在F1的单个分子上,荧光肌动蛋白丝附着在FOF1上。他们首先探究功能旋转,然后探究给定的二硫键形成后的随机旋转运动。酶的大部分(特别是F1的中心轴)和长的偏心轴承都很硬(扭转刚度κ> 750 pNnm)。转子的一个域,即F1的亚基γ和ε的球状部分与FO的c形环相接触的区域更加顺应(κ≅68 pNnm)。该弹性缓冲器使两个步进电机之间的协作变得顺畅。它位于需要的位置,在这两个位置之间生成和消耗FO和F1中的电源冲程。

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