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首页> 外文期刊>Circulation research: a journal of the American Heart Association >A novel mechanism of gamma/delta T-lymphocyte and endothelial activation by shear stress: the role of ecto-ATP synthase beta chain.
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A novel mechanism of gamma/delta T-lymphocyte and endothelial activation by shear stress: the role of ecto-ATP synthase beta chain.

机译:γ/δT淋巴细胞和内皮细胞被剪应力激活的新机制:胞外ATP合酶β链的作用。

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RATIONALE: Endothelial cells (ECs) have distinct mechanotransduction mechanisms responding to laminar versus disturbed flow patterns. Endothelial dysfunction, affected by imposed flow, is one of the earliest events leading to atherogenesis. The involvement of gamma/delta T lymphocytes in endothelial dysfunction under flow is largely unknown. OBJECTIVE: To investigate whether shear stress regulates membrane translocation of ATP synthase beta chain (ATPSbeta) in ECs, leading to the increased gamma/delta T-lymphocyte adhesion and the related functions. METHOD AND RESULTS: We applied different flow patterns to cultured ECs. Laminar flow decreased the level of membrane-bound ATPSbeta (ecto-ATPSbeta) and depleted membrane cholesterol, whereas oscillatory flow increased the level of ecto-ATPSbeta and membrane cholesterol. Incubating ECs with cholesterol or depleting cellular cholesterol with beta-cyclodextrin mimicked the effect of oscillatory or laminar flow, respectively. Knockdown caveolin-1 by small interfering RNA prevented ATPSbeta translocation in response to laminar flow. Importantly, oscillatory flow or cholesterol treatment elevated the number of gamma/delta T cells binding to ECs, which was blocked by anti-ATPSbeta antibody. Furthermore, the incubation of gamma/delta T cells with ECs increased tumor necrosis fact alpha and interferon-gamma secretion from T cells and vascular cell adhesion molecule-1 expression in ECs. In vivo, gamma/delta T-cell adhesion and ATPSbeta membrane translocation was elevated in the aortic inner curvature and disturbed flow areas in partially ligated carotid arteries of ApoE(-/-) mice fed a high-fat diet. CONCLUSIONS: This study provides evidence that disturbed flow and hypercholesterolemia synergistically promote gamma/delta T-lymphocyte activation by the membrane translocation of ATPSbeta in ECs and in vivo in mice, which is a novel mechanism of endothelial activation.
机译:理由:内皮细胞(EC)具有独特的机械转导机制,可响应层流与干扰流模式。受强加血流影响的内皮功能障碍是导致动脉粥样硬化的最早事件之一。 γ/δT淋巴细胞在血流下的内皮功能障碍中的作用是未知的。目的:探讨剪切应力是否调节ECs中ATP合酶β链(ATPSbeta)的膜移位,从而导致γ/δT淋巴细胞粘附增加及相关功能。方法和结果:我们对培养的EC采用不同的流动模式。层流降低了膜结合的ATPSbeta(ecto-ATPSbeta)的水平并减少了膜胆固醇,而振荡流则增加了ecto-ATPSbeta和膜胆固醇的水平。将EC与胆固醇一起温育或将β-环糊精与细胞胆固醇一起消灭,可以分别模拟振荡或层流的影响。通过干扰小RNA敲低caveolin-1阻止了ATPSbeta易位层流。重要的是,振荡流动或胆固醇治疗提高了与EC结合的γ/δT细胞的数量,这被抗ATPSbeta抗体阻断。此外,将γ/δT细胞与EC一起孵育会增加肿瘤坏死因子α和T细胞中干扰素-γ的分泌以及EC中血管细胞粘附分子-1的表达。在体内,在高脂饮食喂养的ApoE(-/-)小鼠部分结扎的颈动脉中,主动脉内曲率和不规则血流区域的γ/δT细胞粘附和ATPSbeta膜移位增加。结论:这项研究提供了证据,证明扰动的血流和高胆固醇血症通过ATPSbeta在ECs和小鼠体内的膜易位协同促进了γ/δT淋巴细胞的激活,这是一种内皮激活的新机制。

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