首页> 外文期刊>American Journal of Physiology >Activation of inward rectifier K+ channels by hypoxia in rabbit coronary arterial smooth muscle cells.
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Activation of inward rectifier K+ channels by hypoxia in rabbit coronary arterial smooth muscle cells.

机译:缺氧激活兔冠状动脉平滑肌细胞内向整流器K +通道。

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摘要

We examined the effects of acute hypoxia on Ba2+-sensitive inward rectifier K+ (K(IR)) current in rabbit coronary arterial smooth muscle cells. The amplitudes of K(IR) current was definitely higher in the cells from small-diameter (<100 microm) coronary arterial smooth muscle cells (SCASMC, -12.8 +/- 1.3 pA/pF at -140 mV) than those in large-diameter coronary arterial smooth muscle cells (>200 microm, LCASMC, -1.5 +/- 0.1 pA pF(-1)). Western blot analysis confirmed that Kir2.1 protein was expressed in SCASMC but not LCASMC. Hypoxia activated much more KIR currents in symmetrical 140 K+. This effect was blocked by the adenylyl cyclase inhibitor SQ-22536 (10 microM) and mimicked by forskolin (10 microM) and dibutyryl-cAMP (500 microM). The production of cAMP in SCASMC increased 5.7-fold after 6 min of hypoxia. Hypoxia-induced increase in KIR currents was abolished by the PKA inhibitors, Rp-8-(4-chlorophenylthio)-cAMPs (10 microM) and KT-5720 (1 microM). The inhibition of G protein with GDPbetaS (1 mM) partially reduced (approximately 50%) the hypoxia-induced increase in KIR currents. In Langendorff-perfused rabbit hearts, hypoxia increased coronary blood flow, an effect that was inhibited by Ba2+. In summary, hypoxia augments the KIR currents in SCASMC via cAMP- and PKA-dependent signaling cascades, which might, at least partly, explain the hypoxia-induced coronary vasodilation.
机译:我们检查了急性缺氧对兔冠状动脉平滑肌细胞中Ba2 +敏感的内向整流器K +(K(IR))电流的影响。小直径(<100微米)冠状动脉平滑肌细胞(SCASMC,-140 mV时为-12.8 +/- 1.3 pA / pF)的细胞中,K(IR)电流的幅度肯定高于大直径的细胞。直径的冠状动脉平滑肌细胞(> 200 microm,LCASMC,-1.5 +/- 0.1 pA pF(-1))。 Western印迹分析证实,Kir2.1蛋白在SCASMC中表达,而在LCASMC中不表达。缺氧在对称的140 K +中激活了更多的KIR电流。该作用被腺苷酸环化酶抑制剂SQ-22536(10 microM)阻断,并被毛喉素(10 microM)和二丁酰-cAMP(500 microM)模拟。缺氧6分钟后,SCASMC中cAMP的产量增加了5.7倍。 PKA抑制剂,Rp-8-(4-氯苯硫基)-cAMPs(10 microM)和KT-5720(1 microM)消除了低氧引起的KIR电流增加。用GDPbetaS(1 mM)抑制G蛋白可部分减少(约50%)低氧诱导的KIR电流增加。在Langendorff灌注的兔心脏中,低氧增加了冠状​​动脉血流量,而Ba2 +抑制了这种作用。总之,低氧通过依赖cAMP和PKA的信号级联增加了SCASMC中的KIR电流,这可能至少部分解释了低氧引起的冠状血管扩张。

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