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Basic Properties of Rotary Dynamics of the Molecular Motor Enterococcus hirae V1-ATPase

机译:分子运动平肠球菌V1-ATPase旋转动力学的基本性质

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摘要

V-ATPases are rotary molecular motors that generally function as proton pumps. We recently solved the crystal structures of the V1 moiety of Enterococcus hirae V-ATPase (EhV1) and proposed a model for its rotation mechanism. Here, we characterized the rotary dynamics of EhV1 using single-molecule analysis employing a load-free probe. EhV1 rotated in a counterclockwise direction, exhibiting two distinct rotational states, namely clear and unclear, suggesting unstable interactions between the rotor and stator. The clear state was analyzed in detail to obtain kinetic parameters. The rotation rates obeyed Michaelis-Menten kinetics with a maximal rotation rate (Vmax) of 107 revolutions/s and a Michaelis constant (Km) of 154 μm at 26 °C. At all ATP concentrations tested, EhV1 showed only three pauses separated by 120°/turn, and no substeps were resolved, as was the case with Thermus thermophilus V1-ATPase (TtV1). At 10 μm ATP (⪡Km), the distribution of the durations of the ATP-waiting pause fit well with a single-exponential decay function. The second-order binding rate constant for ATP was 2.3 × 106 m−1 s−1. At 40 mm ATP (⪢Km), the distribution of the durations of the catalytic pause was reproduced by a consecutive reaction with two time constants of 2.6 and 0.5 ms. These kinetic parameters were similar to those of TtV1. Our results identify the common properties of rotary catalysis of V1-ATPases that are distinct from those of F1-ATPases and will further our understanding of the general mechanisms of rotary molecular motors.
机译:V-ATP酶是旋转分子马达,通常起质子泵的作用。我们最近解决了平肠肠球菌V-ATPase(EhV1)V1部分的晶体结构,并提出了其旋转机制的模型。在这里,我们使用无负载探针通过单分子分析表征了EhV1的旋转动力学。 EhV1沿逆时针方向旋转,表现出两种不同的旋转状态,即清晰和不清晰,表明转子和定子之间的相互作用不稳定。详细分析了透明状态以获得动力学参数。在26°C时,旋转速度服从Michaelis-Menten动力学,最大旋转速度(Vmax)为107转/秒,Michaelis常数(Km)为154μm。在所有测试的ATP浓度下,EhV1仅表现出三个停顿,每停顿间隔120°/转,并且没有解决任何子步骤,就像嗜热栖热菌V1-ATPase(TtV1)一样。在10μmATP(⪡Km)下,等待ATP的持续时间的分布与单指数衰减函数非常吻合。 ATP的二阶结合速率常数为2.3×10 6 m -1 s -1 。在40 mm ATP(⪢Km)下,催化停顿持续时间的分布是通过两个时间常数分别为2.6和0.5 ms的连续反应重现的。这些动力学参数类似于TtV1。我们的研究结果确定了V1-ATPase的旋转催化与F1-ATPase的催化不同的共同特性,并将进一步使我们对旋转分子马达的一般机理有所了解。

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