Université de Bordeaux, Centre de Recherche Cardio-Thoracique de Bordeaux, France.
Am J Physiol Lung Cell Mol Physiol. 2012 Nov 1;303(9):L824-33. doi: 10.1152/ajplung.00244.2011. Epub 2012 Sep 7.
There is a growing body of evidence indicating that transient receptor potential (TRP) channels are implicated in calcium signaling and various cellular functions in the pulmonary vasculature. The aim of this study was to investigate the expression, functional role, and coupling to reticulum calcium channels of the type 4 vanilloid TRP subfamily (TRPV4) in the pulmonary artery from both normoxic (Nx) and chronically hypoxic (CH) rats. Activation of TRPV4 with the specific agonist 4α-phorbol-12,13-didecanoate (4α-PDD, 5 μM) increased the intracellular calcium concentration (Ca(2+)). This effect was significantly reduced by a high concentration of ryanodine (100 μM) or chronic caffeine (5 mM) that blocked ryanodine receptor (RyR) but was insensitive to xestospongin C (10 μM), an inositol trisphosphate receptor antagonist. Inhibition of RyR1 and RyR3 only with 10 μM of dantrolene did not attenuate the 4α-PDD-induced Ca(2+) increase. Western blotting experiments revealed the expression of TRPV4 and RyR2 with an increase in both receptors in pulmonary arteries from CH rats vs. Nx rats. Accordingly, the 4α-PDD-activated current, measured with patch-clamp technique, was increased in pulmonary artery smooth muscle cells (PASMC) from CH rats vs. Nx rats. 4α-PDD increased isometric tension in artery rings, and this response was also potentiated under chronic hypoxia conditions. 4α-PDD-induced calcium response, current, and contraction were all inhibited by the selective TRPV4 blocker HC-067047. Collectively, our findings provide evidence of the interplay between TRPV4 and RyR2 in the Ca(2+) release mechanism and contraction in PASMC. This study provides new insights onto the complex calcium signaling in PASMC and point out the importance of the TRPV4-RyR2 signaling pathway under hypoxic conditions that may lead to pulmonary hypertension.
越来越多的证据表明,瞬时受体电位 (TRP) 通道参与了肺血管中的钙信号传递和各种细胞功能。本研究旨在探讨正常氧 (Nx) 和慢性低氧 (CH) 大鼠肺动脉中香草素型 4 型 TRPV 亚家族 (TRPV4) 的表达、功能作用及其与内质网钙通道的偶联。用特异性激动剂 4α-佛波醇-12,13-二癸酸酯 (4α-PDD,5 μM) 激活 TRPV4 可增加细胞内钙浓度 (Ca(2+))。该效应可被高浓度的ryanodine (100 μM) 或慢性咖啡因 (5 mM) 显著抑制,ryanodine 受体 (RyR) 被ryanodine 阻断,但对肌醇三磷酸受体拮抗剂 xestospongin C (10 μM) 不敏感。仅用 10 μM 的 dantrolene 抑制 RyR1 和 RyR3 并不能减弱 4α-PDD 诱导的 Ca(2+)增加。Western blot 实验显示,TRPV4 和 RyR2 的表达增加,CH 大鼠肺血管中这两种受体的表达均增加。相应地,与 Nx 大鼠相比,CH 大鼠肺动脉平滑肌细胞 (PASMC) 中 4α-PDD 激活的电流增加。4α-PDD 增加动脉环的等长张力,在慢性低氧条件下,这种反应也得到增强。4α-PDD 诱导的钙反应、电流和收缩均被选择性 TRPV4 阻断剂 HC-067047 抑制。综上所述,本研究结果提供了 TRPV4 与 RyR2 在钙释放机制和 PASMC 收缩中的相互作用的证据。本研究为 PASMC 中复杂的钙信号传递提供了新的见解,并指出了 TRPV4-RyR2 信号通路在低氧条件下的重要性,这可能导致肺动脉高压。