Tamiya Yuji, Watanabe Rikiya, Noji Hiroyuki, Li Chun-Biu, Komatsuzaki Tamiki
Department of Mathematics, Hokkaido University, Sapporo 001-0020, Japan.
Phys Chem Chem Phys. 2018 Jan 17;20(3):1872-1880. doi: 10.1039/c7cp06256g.
F-ATPase (F) is an efficient rotary protein motor, whose reactivity is modulated by the rotary angle to utilize thermal fluctuation. In order to elucidate how its kinetics are affected by the change in the fluctuation, we have extended the reaction-diffusion formalism [R. Watanabe et al., Biophys. J., 2013, 105, 2385] applicable to a wider range of temperatures based on experimental data analysis of F derived from thermophilic Bacillus under high ATP concentration conditions. Our simulation shows that the rotary angle distribution manifests a stronger non-equilibrium feature as the temperature increases, because ATP hydrolysis and P release are more accelerated compared with the timescale of rotary angle relaxation. This effect causes the rate coefficient obtained from dwell time fitting to deviate from the Arrhenius relation in P release, which has been assumed in the previous activation thermodynamic quantities estimation using linear Arrhenius fitting. Larger negative correlation is also found between hydrolysis and P release waiting time in a catalytic dwell with the increase in temperature. This loss of independence between the two successive reactions at the catalytic dwell sheds doubt on the conventional dwell time fitting to obtain rate coefficients with a double exponential function at temperatures higher than 65 °C, which is close to the physiological temperature of the thermophilic Bacillus.
F型ATP酶(F)是一种高效的旋转蛋白马达,其反应活性受旋转角度调节以利用热涨落。为了阐明其动力学如何受涨落变化的影响,我们基于对嗜热芽孢杆菌来源的F在高ATP浓度条件下的实验数据分析,扩展了适用于更宽温度范围的反应扩散形式理论[R. 渡边等人,《生物物理杂志》,2013年,第105卷,第2385页]。我们的模拟表明,随着温度升高,旋转角度分布表现出更强的非平衡特征,这是因为与旋转角度弛豫的时间尺度相比,ATP水解和磷酸释放加速得更多。这种效应导致从停留时间拟合得到的速率系数偏离磷酸释放中的阿仑尼乌斯关系,而在先前使用线性阿仑尼乌斯拟合估计活化热力学量时曾假定存在该关系。随着温度升高,在催化停留中水解和磷酸释放等待时间之间也发现了更大的负相关性。在高于65°C(接近嗜热芽孢杆菌的生理温度)的温度下,催化停留时两个连续反应之间这种独立性的丧失,使得人们对用双指数函数进行传统停留时间拟合以获得速率系数产生了怀疑。