首页> 美国卫生研究院文献>American Journal of Physiology - Cell Physiology >Ca2+ release from the sarcoplasmic reticulum is required for sustained TRPM4 activity in cerebral artery smooth muscle cells
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Ca2+ release from the sarcoplasmic reticulum is required for sustained TRPM4 activity in cerebral artery smooth muscle cells

机译:从肌浆网释放Ca2 +是大脑动脉平滑肌细胞持续TRPM4活性所必需的

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摘要

The melastatin transient receptor potential (TRP) channel TRPM4 is a critical regulator of vascular smooth muscle cell membrane potential and contractility. Activation of the channel is Ca2+-dependent, but prolonged exposure to high (>1 μM) levels of intracellular Ca2+ causes rapid (within ∼2 min) desensitization of TRPM4 currents under conventional whole cell and inside-out patch-clamp conditions. The goal of the present study was to establish a novel method to record sustained TRPM4 currents in smooth muscle cells under near-physiological conditions. Using the amphotericin B-perforated patch-clamp technique, we recorded and characterized sustained (up to 30 min) transient inward cation currents (TICCs) in freshly isolated cerebral artery myocytes. In symmetrical cation solutions, TICCs reversed at 0 mV and had an apparent unitary conductance of 25 pS. Replacement of extracellular Na+ with the nonpermeable cation N-methyl-d-glucamine abolished the current. TICC activity was attenuated by the TRPM4 blockers fluflenamic acid and 9-phenanthrol. Selective silencing of TRPM4 expression using small interfering RNA diminished TICC activity, suggesting that the molecular identity of the responsible ion channel is TRPM4. We used the perforated patch-clamp method to test the hypothesis that TRPM4 is activated by intracellular Ca2+ signaling events. We found that TICC activity is independent of Ca2+ influx and ryanodine receptor activity but is attenuated by sarco(endo)plasmic reticulum Ca2+-ATPase inhibition and blockade of inositol 1,4,5-trisphosphate receptor-mediated Ca2+ release from the sarcoplasmic reticulum. Our findings suggest that TRPM4 channels in cerebral artery myocytes are regulated by Ca2+ release from inositol 1,4,5-trisphosphate receptor on the sarcoplasmic reticulum.
机译:褪黑素瞬时受体电位(TRP)通道TRPM4是血管平滑肌细胞膜电位和收缩力的关键调节剂。通道的激活是Ca 2 + 依赖性的,但是长时间暴露于高水平(> 1μM)的细胞内Ca 2 + 会导致快速(约2分钟内)脱敏传统全电池和由内而外的膜片钳条件下TRPM4电流的变化。本研究的目的是建立一种新的方法来记录近生理条件下平滑肌细胞中持续的TRPM4电流。使用两性霉素B穿孔膜片钳技术,我们记录并表征了新鲜分离的脑动脉心肌细胞中持续的(长达30分钟)瞬时内向阳离子电流(TICC)。在对称阳离子溶液中,TICC在0 mV时发生反转,表观单位电导为25 pS。用不可渗透的阳离子N-甲基-d-葡糖胺替代细胞外Na + 消除了电流。 TICC活性被TRPM4阻滞剂氟草酸和9-菲咯啉减弱。使用小的干扰RNA选择性沉默TRPM4表达可降低TICC活性,表明负责的离子通道的分子同一性是TRPM4。我们使用穿孔膜片钳方法来测试TRPM4被细胞内Ca 2 + 信号事件激活的假说。我们发现,TICC活性与Ca 2 + 内流和瑞丹碱受体活性无关,但可被肌浆网(内质网)Ca 2 + -ATPase抑制和肌醇阻断而减弱1,4,5-三磷酸受体介导的Ca 2 + 从肌浆网中释放。我们的研究结果表明,脑浆网中肌醇1,4,5-三磷酸酯受体Ca 2 + 的释放可调节脑动脉心肌细胞中的TRPM4通道。

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