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Expression of store-operated Ca2+ entry and transient receptor potential canonical and vanilloid-related proteins in rat distal pulmonary venous smooth muscle

机译:大鼠远端肺静脉平滑肌中贮库操作的Ca2 +进入和瞬时受体电位的典型和类香草酸相关蛋白的表达

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摘要

Chronic hypoxia causes remodeling and alters contractile responses in both pulmonary arteries and pulmonary veins. Although pulmonary arteries have been studied extensively in these disorders, the mechanisms by which pulmonary veins respond to hypoxia and whether these responses contribute to chronic hypoxic pulmonary hypertension remain poorly understood. In pulmonary arterial smooth muscle, we have previously demonstrated that influx of Ca2+ through store-operated calcium channels (SOCC) thought to be composed of transient receptor potential (TRP) proteins is likely to play an important role in development of chronic hypoxic pulmonary hypertension. To determine whether this mechanism could also be operative in pulmonary venous smooth muscle, we measured intracellular Ca2+ concentration ([Ca2+]i) by fura-2 fluorescence microscopy in primary cultures of pulmonary venous smooth muscle cells (PVSMC) isolated from rat distal pulmonary veins. In cells perfused with Ca2+-free media containing cyclopiazonic acid (10 μM) and nifedipine (5 μM) to deplete sarcoplasmic reticulum Ca2+ stores and block voltage-dependent Ca2+ channels, restoration of extracellular Ca2+ (2.5 mM) caused marked increases in [Ca2+]i, whereas MnCl2 (200 μM) quenched fura-2 fluorescence, indicating store-operated Ca2+ entry (SOCE). SKF-96365 and NiCl2, antagonists of SOCC, blocked SOCE at concentrations that did not alter Ca2+ responses to 60 mM KCl. Of the seven known canonical TRP (TRPC1–7) and six vanilloid-related TRP channels (TRPV1–6), real-time PCR revealed mRNA expression of TRPC1 > TRPC6 > TRPC4 > TRPC2 ≈ TRPC5 > TRPC3, TRPV2 > TRPV4 > TRPV1 in distal PVSMC, and TRPC1 > TRPC6 > TRPC3 > TRPC4 ≈ TRPC5, TRPV2 ≈ TRPV4 > TRPV1 in rat distal pulmonary vein (PV) smooth muscle. Western blotting confirmed protein expression of TRPC1, TRPC6, TRPV2, and TRPV4 in both PVSMC and PV. Our results suggest that SOCE through Ca2+ channels composed of TRP proteins may contribute to Ca2+ signaling in rat distal PV smooth muscle.
机译:慢性缺氧会导致重塑并改变肺动脉和肺静脉的收缩反应。尽管在这些疾病中对肺动脉进行了广泛的研究,但对肺静脉对缺氧的反应机制以及这些反应是否导致慢性低氧性肺动脉高压的了解仍然很少。在肺动脉平滑肌中,我们先前已证明,通过被认为由短暂受体电位(TRP)蛋白组成的储库操作性钙通道(SOCC)流入Ca2 +可能在慢性低氧性肺动脉高压的发展中起重要作用。为了确定这种机制是否也可以在肺静脉平滑肌中起作用,我们通过fura-2荧光显微镜在从大鼠远端肺静脉分离的肺静脉平滑肌细胞(PVSMC)的原代培养物中测量了细胞内Ca2 +浓度([Ca2 +] i)。 。在用不含Ca2 +的培养基中灌注的含有环吡唑酸(10μM)和硝苯地平(5μM)的细胞来耗尽肌浆网Ca2 +储存并阻断电压依赖性Ca2 +通道的过程中,细胞外Ca2 +(2.5 mM)的恢复引起[Ca2 +]的显着增加。 i,而MnCl2(200μM)淬灭了fura-2荧光,表明存储操作的Ca2 +进入(SOCE)。 SOCC的拮抗剂SKF-96365和NiCl2在不改变Ca2 +对60 mM KCl反应的浓度下阻断了SOCE。在七个已知的典型TRP(TRPC1–7)和六个类香草素相关的TRP通道(TRPV1–6)中,实时PCR显示TRPC1> TRPC6> TRPC4> TRPC2≈TRPC5> TRPC3,TRPV2> TRPV4> TRPV1的mRNA表达大鼠远端肺静脉平滑肌中的TRSMC1> TRPC6> TRPC3> TRPC4≈TRPC5,TRPV2≈TRPV4> TRPV1。 Western blotting证实了PVSMC和PV中TRPC1,TRPC6,TRPV2和TRPV4的蛋白表达。我们的研究结果表明,SOCE通过由TRP蛋白组成的Ca2 +通道可能有助于大鼠远端PV平滑肌中的Ca2 +信号传导。

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