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Ischaemic concentrations of lactate increase TREK1 channel activity by interacting with a single histidine residue in the carboxy terminal domain

机译:乳酸的缺血浓度通过与羧基末端结构域中的单个组氨酸残基相互作用而增加了TREK1通道的活性

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Key points The physiological metabolite, lactate and the two-pore domain leak potassium channel, TREK1 are known neuroprotectants against cerebral ischaemia. However, it is not known whether lactate interacts with TREK1 channel to provide neuroprotection. In this study we show that lactate increases TREK1 channel activity and hyperpolarizes CA1 stratum radiatum astrocytes in hippocampal slices. Lactate increases open probability and decreases longer close time of the human (h)TREK1 channel in a concentration dependent manner. Lactate interacts with histidine 328 (H328) in the carboxy terminal domain of hTREK1 channel to decrease its dwell time in the longer closed state. This interaction was dependent on the charge on H328. Lactate-insensitive mutant H328A hTREK1 showed pH sensitivity similar to wild-type hTREK1, indicating that the effect of lactate on hTREK1 is independent of pH change.
机译:要点生理代谢产物乳酸和两孔结构域泄漏钾通道TREK1是已知的抗脑缺血的神经保护剂。但是,尚不知道乳酸是否与TREK1通道相互作用以提供神经保护作用。在这项研究中,我们显示乳酸增加海马切片中TREK1通道的活性并超极化CA1层放射状星形胶质细胞。乳酸以浓度依赖的方式增加人(h)TREK1通道的打开概率并减少更长的关闭时间。乳酸在hTREK1通道的羧基末端结构域中与组氨酸328(H328)相互作用,以减少其在较长闭合状态下的停留时间。这种相互作用取决于H328的电荷。对乳酸不敏感的突变体H328A hTREK1显示出与野生型hTREK1相似的pH敏感性,表明乳酸对hTREK1的影响与pH变化无关。

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    《The Journal of Physiology》 |2016年第1期|共23页
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