【2h】

Structural basis underlying the dual gate properties of KcsA

机译:KcsA双门特性的结构基础

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摘要

KcsA is a prokaryotic pH-dependent potassium (K) channel. Its activation, by a decrease in the intracellular pH, is coupled with its subsequent inactivation, but the underlying mechanisms remain elusive. Here, we have investigated the conformational changes and equilibrium of KcsA by using solution NMR spectroscopy. Controlling the temperature and pH of KcsA samples produced three distinct methyl-TROSY and NOESY spectra, corresponding to the resting, activated, and inactivated states. The pH-dependence of the signals from the extracellular side was affected by the mutation of H25 on the intracellular side, indicating the coupled conformational changes of the extracellular and intracellular gates. K+ titration and NOE experiments revealed that the inactivated state was obtained by the replacement of K+ with H2O, which may interfere with the K+-permeation. This structural basis of the activation-coupled inactivation is closely related to the C-type inactivation of other K channels.
机译:KcsA是原核pH依赖性钾(K)通道。通过细胞内pH值的降低,其活化与随后的失活相结合,但是潜在的机制仍然难以捉摸。在这里,我们使用溶液NMR光谱研究了KcsA的构象变化和平衡。控制KcsA样品的温度和pH值会产生三个不同的甲基TROSY和NOESY光谱,分别对应于静止,活化和失活状态。来自细胞外侧的信号的pH依赖性受细胞内侧H25的突变影响,表明细胞外和细胞内门的偶联构象变化。 K + 滴定和NOE实验表明,失活状态是通过用水置换K + 而获得的,这可能会干扰K + -渗透。激活偶联失活的这种结构基础与其他K通道的C型失活密切相关。

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