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首页> 外文期刊>Molecular pharmacology. >Direct stimulation of K(ATP) channels by exogenous and endogenous hydrogen sulfide in vascular smooth muscle cells.
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Direct stimulation of K(ATP) channels by exogenous and endogenous hydrogen sulfide in vascular smooth muscle cells.

机译:血管平滑肌细胞中的内源性和内源性硫化氢直接刺激K(ATP)通道。

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摘要

ATP-sensitive K+ (K(ATP)) channels in vascular smooth muscle cells (VSMC) are important targets for endogenous metabolic regulation and exogenous drug therapy. H2S, as a novel gasotransmitter, has been shown to relax rat aortic tissues via opening of K(ATP) channels. However, interaction of H2S, exogenous-applied or endogenous-produced, with K(ATP) channels in resistance artery VSMC has not been delineated. In the present study, using the whole-cell and single-channel patch-clamp technique, we demonstrated that exogenous H2S activated K(ATP) channels and hyperpolarized cell membrane in rat mesenteric artery VSMC. H2S enhanced the amplitude of whole-cell K(ATP) currents with an EC50 value of 116 +/- 8.3 microM and increased the open probability of single K(ATP) channels. H2S hyperpolarized membrane potentials by -12 mV in nystatin-perforated VSMC. Furthermore, inhibition of endogenous H2S production with D,L-propargylglycine (PPG) reduced whole-cell K(ATP) currents. PPG alone had no effect on unitary K(ATP) channel currents in cell-free membrane patches. In addition, effects of H2S on K(ATP) channels and membrane potentials were independent of cGMP-mediated phosphorylation. This study demonstrated modulation of K(ATP) channel activity by exogenous and endogenous H2S in resistance artery VSMC, thus helping elucidate cardiovascular functions of this endogenous gas.
机译:血管平滑肌细胞(VSMC)中的ATP敏感K +(K(ATP))通道是内源性代谢调节和外源性药物治疗的重要目标。 H2S作为一种新型的气体递质,已显示可通过打开K(ATP)通道来松弛大鼠主动脉组织。然而,尚没有描述外源性或内源性产生的H2S与阻力动脉VSMC中的K(ATP)通道的相互作用。在本研究中,使用全细胞和单通道膜片钳技术,我们证明了外源性H2S激活了大鼠肠系膜动脉VSMC中的K(ATP)通道和超极化细胞膜。 H2S以116 +/- 8.3 microM的EC50值增强了全细胞K(ATP)电流的幅度,并增加了单个K(ATP)通道的打开可能性。在制霉菌素穿孔的VSMC中,H2S超极化膜电位为-12 mV。此外,用D,L-炔丙基甘氨酸(PPG)抑制内源性H2S的产生减少了全细胞K(ATP)电流。仅PPG对无细胞膜片中的单一K(ATP)通道电流没有影响。此外,H2S对K(ATP)通道和膜电位的影响与cGMP介导的磷酸化无关。这项研究证明了阻力动脉VSMC中外源性和内源性H2S对K(ATP)通道活性的调节,从而有助于阐明这种内源性气体的心血管功能。

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