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The conduction pathway of potassium channels is water free under physiological conditions

机译:钾通道的传导途径在生理条件下是无水的

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Ion conduction through potassium channels is a fundamental process of life. On the basis of crystallographic data, it was originally proposed that potassium ions and water molecules are transported through the selectivity filter in an alternating arrangement, suggesting a “water-mediated” knock-on mechanism. Later on, this view was challenged by results from molecular dynamics simulations that revealed a “direct” knock-on mechanism where ions are in direct contact. Using solid-state nuclear magnetic resonance techniques tailored to characterize the interaction between water molecules and the ion channel, we show here that the selectivity filter of a potassium channel is free of water under physiological conditions. Our results are fully consistent with the direct knock-on mechanism of ion conduction but contradict the previously proposed water-mediated knock-on mechanism.
机译:通过钾离子通道的离子传导是生命的基本过程。根据晶体学数据,最初提出钾离子和水分子以交替排列的方式通过选择性过滤器传输,提示“水介导的”连锁机制。后来,这种观点受到分子动力学模拟结果的挑战,该结果揭示了离子直接接触的“直接”连锁机制。使用适合于表征水分子与离子通道之间相互作用的固态核磁共振技术,我们在这里表明钾通道的选择性过滤器在生理条件下不含水。我们的结果与离子传导的直接连锁机制完全一致,但与先前提出的水介导的连锁机制相矛盾。

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