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Oscillating Electric Field Measures the Rotation Rate in a Native Rotary Enzyme

机译:振荡电场测量天然旋转酶的旋转速率

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摘要

Rotary enzymes are complex, highly challenging biomolecular machines whose biochemical working mechanism involves intersubunit rotation. The true intrinsic rate of rotation of any rotary enzyme is not known in a native, unmodified state. Here we use the effect of an oscillating electric (AC) field on the biochemical activity of a rotary enzyme, the vacuolar proton-ATPase (V-ATPase), to directly measure its mean rate of rotation in its native membrane environment, without any genetic, chemical or mechanical modification of the enzyme, for the first time. The results suggest that a transmembrane AC field is able to synchronise the steps of ion-pumping in individual enzymes via a hold-and-release mechanism, which opens up the possibility of biotechnological exploitation. Our approach is likely to work for other transmembrane ion-transporting assemblies, not only rotary enzymes, to determine intrinsic in situ rates of ion pumping.
机译:旋转酶是复杂的,具有高度挑战性的生物分子机器,其生化工作机制涉及亚基间旋转。在天然的未修饰状态下,任何旋转酶的真实内在旋转速率都是未知的。在这里,我们使用振荡电场(AC)对旋转酶液泡质子-ATPase(V-ATPase)的生化活性的影响,直接测量其在天然膜环境中的平均旋转速率,而无需任何遗传首次对酶进行化学或机械修饰。结果表明,跨膜交流场能够通过保持和释放机制同步各个酶中的离子泵送步骤,这为生物技术开发提供了可能性。我们的方法可能适用于其他跨膜离子运输组件,而不仅仅是旋转酶,以确定离子泵的固有原位速率。

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