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首页> 外文期刊>Canadian Journal of Physiology and Pharmacology >Phosphodiesterase 4D7 selectively regulates cAMP-mediated control of human arterial endothelial cell transcriptomic responses to fluid shear stress
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Phosphodiesterase 4D7 selectively regulates cAMP-mediated control of human arterial endothelial cell transcriptomic responses to fluid shear stress

机译:磷酸二酯酶4d7选择性地调节阵营介导对流体剪切应力的人动脉内皮细胞转发组反应的阵营控制

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摘要

Human arterial endothelial cells (HAECs) regulate their phenotype by integrating signals encoded in the frictional forces exerted by flowing blood, fluid shear stress (FSS). High laminar FSS promotes establishment of adaptive HAEC phenotype protective against atherosclerosis, whereas low or disturbed FSS cause HAECs to adopt atheroprone phenotypes. A vascular endothelial cadherin (VE cadherin)-based mechanosensory complex allows HAECs to regulate barrier function, cell morphology,/ and gene expression in response to FSS. Previously, we reported that this mechanosensor integrated exchange protein activated by cAMP (EPAC1) and a PDE4D gene derived cyclic nucleotide phosphodiesterase (PDE), but had not identified the PDE4D variant involved. Our hypothesis here was that only one of the two ~100 kDa PDE4D variants expressed in HAECs coordinated these responses. Now, we show one unique PDE4D splice variant, PDE4D7, controls transcriptional responses of HAECs to FSS while another, PDE4D5, does not. Adaptive transcriptional responses of HAECs subjected to laminar FSS in vitro were blunted in cells in which PDE4D7 was silenced, but unaffected in cells with silenced PDE4D5. This work identifies a specific therapeutic target for the treatment or prevention of atherosclerosis and improves our understanding of the role of cAMP signaling in modulating mechanosensory signal transduction in the vascular endothelium.
机译:人类动脉内皮细胞(HAEC)通过整合流动血液产生的摩擦力、流体剪切应力(FSS)中编码的信号来调节其表型。高层流FSS促进适应性HAEC表型的建立,从而保护抗动脉粥样硬化,而低层流FSS或受干扰FSS则导致HAEC采用易动脉粥样硬化表型。基于血管内皮钙粘蛋白(VE-cadherin,VE-cadherin)的机械感觉复合物可使血管内皮细胞调节屏障功能、细胞形态和基因表达,以响应FSS。之前,我们报道了这种机械传感器整合的交换蛋白被cAMP(EPAC1)和一种PDE4D基因衍生的环核苷酸磷酸二酯酶(PDE)激活,但尚未确定涉及的PDE4D变体。我们的假设是,在HAECs中表达的两个~100kDa PDE4D变体中,只有一个协调了这些反应。现在,我们展示了一种独特的PDE4D剪接变体PDE4D7,它控制HAECs对FSS的转录反应,而另一种PDE4D5则没有。在PDE4D7沉默的细胞中,体外经层流FSS处理的造血干细胞的适应性转录反应减弱,但在PDE4D5沉默的细胞中不受影响。这项工作确定了治疗或预防动脉粥样硬化的特定治疗靶点,并提高了我们对cAMP信号在调节血管内皮细胞机械感觉信号转导中的作用的理解。

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