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硫酸乙酰肝素蛋白聚糖-1 的缺失会诱导内皮细胞呈现促炎表型,使其对动脉保护型血流产生失调的反应。

Loss of syndecan-1 induces a pro-inflammatory phenotype in endothelial cells with a dysregulated response to atheroprotective flow.

机构信息

From the Department of Biomedical Engineering, University of Texas at Austin, Austin, Texas 78712 and.

出版信息

J Biol Chem. 2014 Apr 4;289(14):9547-59. doi: 10.1074/jbc.M113.541573. Epub 2014 Feb 19.

Abstract

Fluid shear stresses are potent regulators of vascular homeostasis and powerful determinants of vascular disease progression. The glycocalyx is a layer of glycoaminoglycans, proteoglycans, and glycoproteins that lines the luminal surface of arteries. The glycocalyx interacts directly with hemodynamic forces from blood flow and, consequently, is a prime candidate for the mechanosensing of fluidic shear stresses. Here, we investigated the role of the glycocalyx component syndecan-1 (sdc-1) in controlling the shear stress-induced signaling and flow-mediated phenotypic modulation in endothelial cells. We found that knock-out of sdc-1 abolished several key early signaling events of endothelial cells in response to shear stress including the phosphorylation of Akt, the formation of a spatial gradient in paxillin phosphorylation, and the activation of RhoA. After exposure to atheroprotective flow, we found that sdc-1 knock-out endothelial cells had a phenotypic shift to an inflammatory/pro-atherosclerotic phenotype in contrast to the atheroprotective phenotype of wild type cells. Consistent with these findings, we found increased leukocyte adhesion to sdc-1 knock-out endothelial cells in vitro that was reduced by re-expression of sdc-1. In vivo, we found increased leukocyte recruitment and vascular permeability/inflammation in sdc-1 knock-out mice. Taken together, our studies support a key role for sdc-1 in endothelial mechanosensing and regulation of endothelial phenotype.

摘要

流体切应力是血管稳态的有力调节因子,也是血管疾病进展的有力决定因素。糖萼是一层糖胺聚糖、蛋白聚糖和糖蛋白,排列在动脉的腔表面。糖萼直接与血流产生的血液动力学力相互作用,因此是流体切应力机械敏感的主要候选物。在这里,我们研究了糖萼成分 syndecan-1(sdc-1)在控制剪切应力诱导的信号传导和血流介导的内皮细胞表型调节中的作用。我们发现,sdc-1 敲除消除了内皮细胞对剪切应力的几种关键早期信号事件,包括 Akt 的磷酸化、paxillin 磷酸化的空间梯度形成以及 RhoA 的激活。在暴露于抗动脉粥样硬化的血流后,我们发现 sdc-1 敲除的内皮细胞发生表型转变,向炎症/动脉粥样硬化表型转变,而野生型细胞则呈现抗动脉粥样硬化表型。与这些发现一致,我们发现 sdc-1 敲除的内皮细胞在体外对白细胞的粘附增加,而 sdc-1 的重新表达则减少了这种粘附。在体内,我们发现 sdc-1 敲除小鼠的白细胞募集和血管通透性/炎症增加。总之,我们的研究支持 sdc-1 在血管内皮细胞机械敏感性和内皮细胞表型调节中的关键作用。

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