Wang Jian, Shimoda L A, Sylvester J T
Div. of Pulmonary & Critical Care Medicine, The Johns Hopkins Asthma and Allergy Center, 5501 Hopkins Bayview Cir., Baltimore, MD 21224, USA.
Am J Physiol Lung Cell Mol Physiol. 2004 Apr;286(4):L848-58. doi: 10.1152/ajplung.00319.2003. Epub 2003 Dec 12.
Mammalian homologs of transient receptor potential (TRP) genes in Drosophila encode TRPC proteins, which make up cation channels that play several putative roles, including Ca2+ entry triggered by depletion of Ca2+ stores in endoplasmic reticulum (ER). This capacitative calcium entry (CCE) is thought to replenish Ca2+ stores and contribute to signaling in many tissues, including smooth muscle cells from main pulmonary artery (PASMCs); however, the roles of CCE and TRPC proteins in PASMCs from distal pulmonary arteries, which are thought to be the major site of pulmonary vasoreactivity, remain uncertain. As an initial test of the possibility that TRPC channels contribute to CCE and Ca2+ signaling in distal PASMCs, we measured [Ca2+]i by fura-2 fluorescence in primary cultures of myocytes isolated from rat intrapulmonary arteries (>4th generation). In cells perfused with Ca2+-free media containing cyclopiazonic acid (10 microM) and nifedipine (5 microM) to deplete ER Ca2+ stores and block voltage-dependent Ca2+ channels, restoration of extracellular Ca2+ (2.5 mM) caused marked increases in [Ca2+]i whereas MnCl2 (200 microM) quenched fura-2 fluorescence, indicating CCE. SKF-96365, LaCl3, and NiCl2, blocked CCE at concentrations that did not alter Ca2+ responses to 60 mM KCl (IC50 6.3, 40.4, and 191 microM, respectively). RT-PCR and Western blotting performed on RNA and protein isolated from distal intrapulmonary arteries and PASMCs revealed mRNA and protein expression for TRPC1, -4, and -6, but not TRPC2, -3, -5, or -7. Our results suggest that CCE through TRPC-encoded Ca2+ channels could contribute to Ca2+ signaling in myocytes from distal intrapulmonary arteries.
果蝇中瞬时受体电位(TRP)基因的哺乳动物同源物编码TRPC蛋白,这些蛋白构成阳离子通道,发挥多种假定作用,包括由内质网(ER)中Ca2+储备耗竭引发的Ca2+内流。这种容量性钙内流(CCE)被认为可补充Ca2+储备,并在包括主肺动脉平滑肌细胞(PASMCs)在内的许多组织的信号传导中发挥作用;然而,CCE和TRPC蛋白在远端肺动脉PASMCs中的作用仍不确定,而远端肺动脉被认为是肺血管反应性的主要部位。作为对TRPC通道在远端PASMCs中对CCE和Ca2+信号传导起作用可能性的初步测试,我们通过fura-2荧光测量了从大鼠肺内动脉(>第4代)分离的原代培养心肌细胞中的[Ca2+]i。在用含有环匹阿尼酸(10 microM)和硝苯地平(5 microM)的无钙培养基灌注的细胞中,以耗尽ER Ca2+储备并阻断电压依赖性Ca2+通道,细胞外Ca2+(2.5 mM)的恢复导致[Ca2+]i显著增加,而MnCl2(200 microM)淬灭fura-2荧光,表明存在CCE。SKF-96365、LaCl3和NiCl2在不改变Ca2+对60 mM KCl反应的浓度下阻断CCE(IC50分别为6.3、40.4和191 microM)。对从远端肺内动脉和PASMCs分离的RNA和蛋白质进行的RT-PCR和蛋白质印迹显示,存在TRPC1、-4和-6的mRNA和蛋白质表达,但不存在TRPC2、-3、-5或-7的表达。我们的结果表明,通过TRPC编码的Ca2+通道的CCE可能有助于远端肺内动脉心肌细胞中的Ca2+信号传导。