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The effects of stretch activation on ionic selectivity of the TREK-2 K2P K(+) channel

机译:拉伸激活对TREK-2 K2P K(+)通道离子选择性的影响

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摘要

The TREK-2 (KCNK10) K2P potassium channel can be regulated by variety of polymodal stimuli including pressure. In a recent study, we demonstrated that this mechanosensitive K(+) channel responds to changes in membrane tension by undergoing a major structural change from its 'down' state to the more expanded 'up' state conformation. These changes are mostly restricted to the lower part of the protein within the bilayer, but are allosterically coupled to the primary gating mechanism located within the selectivity filter. However, any such structural changes within the filter also have the potential to alter ionic selectivity and there are reports that some K2Ps, including TREK channels, exhibit a dynamic ionic selectivity. In this addendum to our previous study we have therefore examined whether the selectivity of TREK-2 is altered by stretch activation. Our results reveal that the filter remains stable and highly selective for K(+) over Na(+) during stretch activation, and that permeability to a range of other cations (Rb(+), Cs(+) and NH4(+)) also does not change. The asymmetric structural changes that occur during stretch activation therefore allow the channel to respond to changes in membrane tension without a loss of K(+) selectivity.
机译:TREK-2(KCNK10)K2P钾通道可通过多种多峰刺激(包括压力)进行调节。在最近的研究中,我们证明了这种机械敏感的K(+)通道通过经历从其“向下”状态到更扩展的“向上”状态构象的重大结构变化,从而响应膜张力的变化。这些变化主要限于双层中蛋白质的下部,但与位于选择性滤膜内的主要选通机制发生变构偶联。但是,过滤器中的任何此类结构变化也可能会改变离子选择性,并且有报道称某些K2P(包括TREK通道)表现出动态的离子选择性。因此,在我们先前研究的附录中,我们研究了TREK-2的选择性是否因拉伸激活而改变。我们的结果表明,该滤膜在拉伸活化过程中相对于Na(+)而言对K(+)保持稳定且高度选择性,并且对其他一系列阳离子(Rb(+),Cs(+)和NH4(+))具有渗透性。也不会改变。因此,在拉伸激活过程中发生的不对称结构变化使通道能够响应膜张力的变化而不会损失K(+)选择性。

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