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双孔钾通道 TREK-1(K2P2.1)调节巨噬细胞中的 NLRP3 炎性小体活性。

Two-pore potassium channel TREK-1 (K2P2.1) regulates NLRP3 inflammasome activity in macrophages.

机构信息

Division of Pediatric Critical Care, Department of Pediatrics, Le Bonheur Children's Hospital, University of Tennessee Health Science Center, Memphis, Tennessee, United States.

Department of Physiology, Saha Cardiovascular Research Center, University of Kentucky, Lexington, Kentucky, United States.

出版信息

Am J Physiol Lung Cell Mol Physiol. 2024 Mar 1;326(3):L367-L376. doi: 10.1152/ajplung.00313.2023. Epub 2024 Jan 22.

Abstract

Because of the importance of potassium efflux in inflammasome activation, we investigated the role of the two-pore potassium (K2P) channel TREK-1 in macrophage inflammasome activity. Using primary alveolar macrophages (AMs) and bone marrow-derived macrophages (BMDMs) from wild-type (wt) and mice, we measured responses to inflammasome priming [using lipopolysaccharide (LPS)] and activation (LPS + ATP). We measured IL-1β, caspase-1, and NLRP3 via ELISA and Western blot. A membrane-permeable potassium indicator was used to measure potassium efflux during ATP exposure, and a fluorescence-based assay was used to assess changes in membrane potential. Inflammasome activation induced by LPS + ATP increased IL-1β secretion in wt AMs, whereas activation was significantly reduced in AMs. Priming of BMDMs using LPS was not affected by either genetic deficiency or pharmacological inhibition of TREK-1 with Spadin. Cleavage of caspase-1 following LPS + ATP treatment was significantly reduced in BMDMs. The intracellular potassium concentration in LPS-primed wt BMDMs was significantly lower compared with BMDMs or wt BMDMs treated with Spadin. Conversely, activation of TREK-1 with BL1249 caused a decrease in intracellular potassium in wt BMDMs. Treatment of LPS-primed BMDMs with ATP caused a rapid reduction in intracellular potassium levels, with the largest change observed in BMDMs. Intracellular K changes were associated with changes in the plasma membrane potential (Em), as evidenced by a more depolarized Em in BMDMs compared with wt, and Em hyperpolarization upon TREK-1 channel opening with BL1249. These results suggest that TREK-1 is an important regulator of NLRP3 inflammasome activation in macrophages. Because of the importance of potassium efflux in inflammasome activation, we investigated the role of the two-pore potassium (K2P) channel TREK-1 in macrophage inflammasome activity. Using primary alveolar macrophages and bone marrow-derived macrophages from wild-type and mice, we measured responses to inflammasome priming (using LPS) and activation (LPS + ATP). Our results suggest that TREK-1 is an important regulator of NLRP3 inflammasome activation in macrophages.

摘要

由于钾外流在炎症小体激活中的重要性,我们研究了双孔钾(K2P)通道 TREK-1 在巨噬细胞炎症小体活性中的作用。使用来自野生型(wt)和 小鼠的原代肺泡巨噬细胞(AMs)和骨髓来源的巨噬细胞(BMDMs),我们测量了炎症小体引发(使用 LPS)和激活(LPS+ATP)的反应。我们通过 ELISA 和 Western blot 测量了 IL-1β、caspase-1 和 NLRP3。使用膜通透性钾指示剂测量 ATP 暴露期间的钾外流,并用荧光测定法评估膜电位变化。LPS+ATP 诱导的炎症小体激活增加了 wt AMs 中 IL-1β 的分泌,而 AMs 中的激活则显著降低。用 LPS 对 BMDMs 进行预刺激不会受到 TREK-1 的遗传缺陷或 Spadin 药理学抑制的影响。LPS+ATP 处理后 caspase-1 的切割在 BMDMs 中显著减少。与 BMDMs 或用 Spadin 处理的 wt BMDMs 相比,LPS 预刺激的 wt BMDMs 中的细胞内钾浓度显著降低。用 BL1249 激活 TREK-1 导致 wt BMDMs 中的细胞内钾减少。用 ATP 处理 LPS 预刺激的 BMDMs 导致细胞内钾水平迅速降低,在 BMDMs 中观察到最大变化。细胞内 K 变化与质膜电位(Em)的变化相关,这表现为与 wt 相比, BMDMs 中的 Em 更去极化,并且 BL1249 打开 TREK-1 通道时 Em 超极化。这些结果表明,TREK-1 是巨噬细胞中 NLRP3 炎症小体激活的重要调节剂。由于钾外流在炎症小体激活中的重要性,我们研究了双孔钾(K2P)通道 TREK-1 在巨噬细胞炎症小体活性中的作用。使用来自野生型(wt)和 小鼠的原代肺泡巨噬细胞和骨髓来源的巨噬细胞,我们测量了对炎症小体引发(使用 LPS)和激活(LPS+ATP)的反应。我们的结果表明,TREK-1 是巨噬细胞中 NLRP3 炎症小体激活的重要调节剂。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/34d7/11281793/beddf4565054/l-00313-2023r01.jpg

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