首页> 外文期刊>Cardiovascular Research >Shear stress is a positive regulator of thimet oligopeptidase (EC3.4.24.15) in vascular endothelial cells: consequences for MHC1 levels.
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Shear stress is a positive regulator of thimet oligopeptidase (EC3.4.24.15) in vascular endothelial cells: consequences for MHC1 levels.

机译:剪切应力是血管内皮细胞中的硫柳苷寡肽酶(EC3.4.24.15)的正调节剂:对MHC1水平的影响。

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Thimet oligopeptidase (TOP, endopeptidase EC3.4.24.15) is a soluble metallopeptidase known to be expressed within the mammalian vasculature. We examine for the first time the relationship between TOP expression and laminar shear stress, a haemodynamic force associated with endothelium-mediated vascular homeostasis.Human and bovine aortic endothelial cells were exposed to physiological levels of laminar shear (0-10 dynes/cm(2), 24-48 h) and monitored for TOP expression using promoter activity assay, qRT-PCR, western blotting, and immunocytochemistry. Using a luciferase reporter encoding the full-length rat TOP promoter, initial studies demonstrated shear-dependent promoter activation (~five-fold). TOP mRNA and protein were also consistently up-regulated by shear, events which could be completely prevented by pre-treatment of cells with either N-acetylcysteine, superoxide dismutase, or catalase, confirming ROS involvement. Consistent with this, targeted inhibition of NADPH oxidase (apocynin, NSC23766, NOX4 siRNA) had a similar blocking effect. Finally, in view of its pivotal role in cellular antigen presentation and major histocompatibility complex (MHC) class-1 regulation, we hypothesized that the shear-dependent induction of TOP may lower MHC1 expression. In this respect, we observed that recombinant TOP over-expression in static HAECs dose-dependently depleted MHC1 (>60%), while siRNA-mediated blockade of TOP induction in sheared HAECs led to substantially elevated MHC1 (~66%).Our findings demonstrate that laminar shear positively regulates endothelial TOP expression. Moreover, a role for ROS production by NADPH oxidase is indicated. Finally, our studies suggest that shear-dependent TOP induction down-regulates MHC1 levels, pointing to a role for TOP in the flow-mediated regulation of endothelial immunogenicity.
机译:Thimet寡肽酶(TOP,内肽酶EC3.4.24.15)是已知在哺乳动物脉管系统中表达的可溶性金属肽酶。我们首次检查了TOP表达与层状剪切应力之间的关系,层状剪切应力是与内皮介导的血管稳态相关的血液动力。人和牛主动脉内皮细胞暴露于层状剪切的生理水平(0-10 dynes / cm(2 ),24-48 h),并使用启动子活性测定,qRT-PCR,蛋白质印迹和免疫细胞化学监测TOP表达。最初的研究表明,使用编码全长大鼠TOP启动子的荧光素酶报道分子,剪切依赖性启动子激活(约5倍)。 TOP mRNA和蛋白质也始终被剪切上调,这些事件可以通过用N-乙酰半胱氨酸,超氧化物歧化酶或过氧化氢酶预处理细胞而完全阻止,从而证实ROS参与。与此相一致,NADPH氧化酶(阿波西宁,NSC23766,NOX4 siRNA)的靶向抑制具有类似的阻断作用。最后,鉴于其在细胞抗原呈递和主要组织相容性复合体(MHC)1类调节中的关键作用,我们假设TOP的剪切依赖性诱导可能降低MHC1的表达。在这一方面,我们观察到静态HAECs中重组TOP的过表达剂量依赖性地消耗了MHC1(> 60%),而在剪切HAECs中siRNA介导的TOP诱导阻断导致MHC1显着升高(〜66%)。证明层流切变正调控内皮TOP表达。此外,表明了NADPH氧化酶产生ROS的作用。最后,我们的研究表明剪切依赖性TOP诱导下调了MHC1水平,这表明TOP在血流介导的内皮免疫原性调节中的作用。

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