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缺血状态下的乳酸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来增加TREK1通道活性。

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

作者信息

Ghatak Swagata, Banerjee Aditi, Sikdar Sujit Kumar

机构信息

Molecular Biophysics Unit, Indian Institute of Science, Bangalore, Karnataka, 560012, India.

出版信息

J Physiol. 2016 Jan 1;594(1):59-81. doi: 10.1113/JP270706. Epub 2015 Nov 17.

Abstract

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. A rise in lactate concentration and the leak potassium channel TREK1 have been independently associated with cerebral ischaemia. Recent literature suggests lactate to be neuroprotective and TREK1 knockout mice show an increased sensitivity to brain and spinal cord ischaemia; however, the connecting link between the two is missing. Therefore we hypothesized that lactate might interact with TREK1 channels. In the present study, we show that lactate at ischaemic concentrations (15-30 mm) at pH 7.4 increases TREK1 current in CA1 stratum radiatum astrocytes and causes membrane hyperpolarization. We confirm the intracellular action of lactate on TREK1 in hippocampal slices using monocarboxylate transporter blockers and at single channel level in cell-free inside-out membrane patches. The intracellular effect of lactate on TREK1 is specific since other monocarboxylates such as pyruvate and acetate at pH 7.4 failed to increase TREK1 current. Deletion and point mutation experiments suggest that lactate decreases the longer close dwell time incrementally with increase in lactate concentration by interacting with the histidine residue at position 328 (H328) in the carboxy terminal domain of the TREK1 channel. The interaction of lactate with H328 is dependent on the charge on the histidine residue since isosteric mutation of H328 to glutamine did not show an increase in TREK1 channel activity with lactate. This is the first demonstration of a direct effect of lactate on ion channel activity. The action of lactate on the TREK1 channel signifies a separate neuroprotective mechanism in ischaemia since it was found to be independent of the effect of acidic pH on channel activity.

摘要

生理代谢产物乳酸以及双孔结构域渗漏钾通道TREK1是已知的针对脑缺血的神经保护剂。然而,尚不清楚乳酸是否与TREK1通道相互作用以提供神经保护。在本研究中,我们表明乳酸可增加TREK1通道活性,并使海马切片中CA1放射层星形胶质细胞超极化。乳酸以浓度依赖性方式增加人(h)TREK1通道的开放概率并减少其较长的关闭时间。乳酸与hTREK1通道羧基末端结构域中的组氨酸328(H328)相互作用,以减少其在较长关闭状态下的停留时间。这种相互作用取决于H328上的电荷。对乳酸不敏感的突变体H328A hTREK1表现出与野生型hTREK1相似的pH敏感性,表明乳酸对hTREK1的作用与pH变化无关。乳酸浓度的升高和渗漏钾通道TREK1已分别与脑缺血相关。最近的文献表明乳酸具有神经保护作用,而TREK1基因敲除小鼠对脑和脊髓缺血表现出更高的敏感性;然而,两者之间的联系尚不清楚。因此我们推测乳酸可能与TREK1通道相互作用。在本研究中,我们表明在pH 7.4时,缺血浓度(15 - 30 mM)的乳酸可增加CA1放射层星形胶质细胞中的TREK1电流并导致膜超极化。我们使用单羧酸转运体阻滞剂在海马切片中以及在无细胞内向外膜片中在单通道水平上证实了乳酸对TREK1的细胞内作用。乳酸对TREK1的细胞内作用是特异性的,因为在pH 7.4时其他单羧酸如丙酮酸和乙酸未能增加TREK1电流。缺失和点突变实验表明,乳酸通过与TREK1通道羧基末端结构域中第328位(H328)的组氨酸残基相互作用,随着乳酸浓度的增加逐渐减少较长的关闭停留时间。乳酸与H328的相互作用取决于组氨酸残基上的电荷,因为将H328同构突变为谷氨酰胺后,TREK1通道活性并未随乳酸增加。这是乳酸对离子通道活性直接作用的首次证明。乳酸对TREK1通道的作用表明缺血中存在一种独立的神经保护机制,因为发现它与酸性pH对通道活性的影响无关。

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