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首页> 外文期刊>American Journal of Physiology >Role of cGMP-dependent protein kinase in regulation of pulmonary vascular smooth muscle cell adhesion and migration: effect of hypoxia
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Role of cGMP-dependent protein kinase in regulation of pulmonary vascular smooth muscle cell adhesion and migration: effect of hypoxia

机译:cGMP依赖性蛋白激酶在调节肺血管平滑肌细胞黏附和迁移中的作用:缺氧的影响

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摘要

Exposure to prolonged hypoxia can result in pulmonary vascular remodeling and pulmonary hypertension. Hypoxia induces pulmonary vascular smooth muscle cell (PVSMC) proliferation and vascular remodeling by affecting cell adhesion and migration and secretion of extracellular matrix proteins. We previously showed that acute hypoxia decreases cGMP-dependent protein kinase (PKG) activity in PVSMC and that PKG plays a role in maintaining the differentiated contractile phenotype in normoxia. In this study, we investigated the effect of hypoxia on PVSMC adhesion and migration and the role of PKG in these functions. Ovine fetal pulmonary artery SMC were incubated in normoxia (P_(O_2) approx100 Torr) or hypoxia (P_(O_2) approx 30-40 Torr) or treated with the PKG inhibitor DT-3 for 24 h in normoxia. To further study the role of PKG in the modulation of adhesion and migration, PVSMC were transiently transfected with a full-length PKG1alpha [PKG-green fluorescent protein (GFP)] or a dominant-negative construct (G1alphaR-GFP). Cell adhesion to extracellular matrix proteins was determined, and integrin-mediated adhesion was assessed by alpha/beta-integrin-mediated cell adhesion array. Exposure to hypoxia (24 h) and pharmacological inhibition of PKG1 by DT-3 significantly promoted adhesion mediated by alpha_4-, beta_1-, and alpha_5beta_1-integrins to fibronectin, laminin, and tenacin and also resulted in increased cell migration. Likewise, inhibition of PKG by expression of a dominant-negative PKG1alpha construct increased cell adhesion and migration, comparable to that induced by hypoxia. Dynamic actin reorganization associated with integrin-mediated cell adhesion is partly regulated by the actin-binding protein cofilin, the (Ser3) phos-phorylation of which inhibits its actin-severing activity. We found that increased PKG expression and activity is associated with decreased cofilin (Ser3) phosphorylation, implying a role for PKG in the modulation of cofilin activity and actin dynamics. Together, these findings identify cGMP/PKG1 signaling as central to the functional differences between PVSMC exposed to normoxia versus hypoxia.
机译:长时间缺氧会导致肺血管重构和肺动脉高压。缺氧通过影响细胞粘附以及细胞外基质蛋白的迁移和分泌,诱导肺血管平滑肌细胞(PVSMC)增殖和血管重塑。我们先前显示急性缺氧会降低PVSMC中cGMP依赖性蛋白激酶(PKG)的活性,并且PKG在维持正常氧中分化的收缩表型中起着作用。在这项研究中,我们调查了缺氧对PVSMC粘附和迁移的影响以及PKG在这些功能中的作用。将绵羊胎儿肺动脉SMC在常氧(P_(O_2)约100 Torr)或缺氧(P_(O_2)约30-40 Torr)中孵育,或在常氧下用PKG抑制剂DT-3处理24小时。为了进一步研究PKG在调节黏附和迁移中的作用,将PVSMC全长PKG1alpha [PKG-绿色荧光蛋白(GFP)]或显性负性构建体(G1alphaR-GFP)瞬时转染。确定细胞对细胞外基质蛋白的粘附,并通过α/β-整合素介导的细胞粘附阵列评估整合素介导的粘附。暴露于缺氧(24 h)和DT-3对PKG1的药理抑制作用显着促进了由alpha_4-,beta_1-和alpha_5beta_1-整联蛋白介导的对纤连蛋白,层粘连蛋白和肌腱蛋白的粘附,还导致细胞迁移增加。同样,通过表达显性负性PKG1alpha构造来抑制PKG可以增加细胞粘附和迁移,这与缺氧所致的粘附和迁移相当。与整联蛋白介导的细胞粘附相关的动态肌动蛋白重组部分受肌动蛋白结合蛋白cofilin的调节,该蛋白的(Ser3)磷酸化抑制其肌动蛋白切断活性。我们发现,增加的PKG表达和活性与减少的cofilin(Ser3)磷酸化有关,这意味着PKG在调节cofilin活性和肌动蛋白动力学中起作用。在一起,这些发现确定cGMP / PKG1信号是暴露于常氧与低氧的PVSMC之间功能差异的关键。

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