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肌腱蛋白X介导血流诱导的内皮-间充质转化抑制及动脉粥样硬化抑制。

Tenascin-X Mediates Flow-Induced Suppression of EndMT and Atherosclerosis.

作者信息

Liang Guozheng, Wang ShengPeng, Shao Jingchen, Jin Young-June, Xu Liran, Yan Yang, Günther Stefan, Wang Lei, Offermanns Stefan

机构信息

Department of Pharmacology, Max Planck Institute for Heart and Lung Research, Germany (G.L., J.S., Y.J., L.W., S.O.).

Cardiovascular Research Center, School of Basic Medical Sciences, Xi'an Jiaotong University Health Science Center, China (S.W., L.X.).

出版信息

Circ Res. 2022 May 27;130(11):1647-1659. doi: 10.1161/CIRCRESAHA.121.320694. Epub 2022 Apr 21.

Abstract

BACKGROUND

Endothelial-to-mesenchymal transition (EndMT) has been identified as a critical driver of vascular inflammation and atherosclerosis, and TGF-β (transforming growth factor β) is a key mediator of EndMT. Both EndMT and atherosclerosis are promoted by disturbed flow, whereas unidirectional laminar flow limits EndMT and is atheroprotective. How EndMT and endothelial TGF-β signaling are regulated by different flow patterns is, however, still poorly understood.

METHODS

Flow chamber experiments in vitro and endothelium-specific knockout mice were used to study the role of tenascin-X in the regulation of EndMT and atherosclerosis as well as the underlying mechanisms.

RESULTS

In human endothelial cells as well as in human and mouse aortae, unidirectional laminar flow but not disturbed flow strongly increased endothelial expression of the extracellular matrix protein TN-X (tenascin-X) in a KLF4 (Krüppel-like factor 4) dependent manner. Mice with endothelium-specific loss of TN-X (EC-Tnxb-KO) showed increased endothelial TGF-β signaling as well as increased endothelial expression of EndMT and inflammatory marker genes. When EC-Tnxb-KO mice were subjected to partial carotid artery ligation, we observed increased vascular remodeling. EC-Tnxb-KO mice crossed to low-density lipoprotein receptor-deficient mice showed advanced atherosclerotic lesions after being fed a high-fat diet. Treatment of EC-Tnxb-KO mice with an anti-TGF-beta antibody or additional endothelial loss of TGF-beta receptors 1 and 2 normalized endothelial TGF-beta signaling and prevented EndMT. In in vitro studies, we found that TN-X through its fibrinogen-like domain directly interacts with TGF-β and thereby interferes with its binding to the TGF-β receptor.

CONCLUSIONS

In summary, we show that TN-X is a central mediator of flow-induced inhibition of EndMT, endothelial inflammation and atherogenesis, which functions by binding to and by blocking the activity of TGF-β. Our data identify a novel mechanism of flow-dependent regulation of vascular TGF-β, which holds promise for generating new strategies to prevent vascular inflammation and atherosclerosis.

摘要

背景

内皮-间充质转化(EndMT)已被确定为血管炎症和动脉粥样硬化的关键驱动因素,而转化生长因子β(TGF-β)是EndMT的关键介质。EndMT和动脉粥样硬化均由紊乱血流促进,而单向层流限制EndMT且具有抗动脉粥样硬化作用。然而,不同血流模式如何调节EndMT和内皮TGF-β信号传导仍知之甚少。

方法

采用体外流动腔实验和内皮特异性敲除小鼠来研究腱生蛋白-X在EndMT和动脉粥样硬化调节中的作用及其潜在机制。

结果

在人内皮细胞以及人和小鼠主动脉中,单向层流而非紊乱血流以依赖Krüppel样因子4(KLF4)的方式强烈增加细胞外基质蛋白腱生蛋白-X(TN-X)的内皮表达。内皮特异性缺失TN-X(EC-Tnxb-KO)的小鼠表现出内皮TGF-β信号传导增加以及EndMT和炎症标志物基因的内皮表达增加。当对EC-Tnxb-KO小鼠进行部分颈动脉结扎时,我们观察到血管重塑增加。与低密度脂蛋白受体缺陷小鼠杂交的EC-Tnxb-KO小鼠在喂食高脂饮食后出现晚期动脉粥样硬化病变。用抗TGF-β抗体治疗EC-Tnxb-KO小鼠或额外使TGF-β受体1和2在内皮中缺失可使内皮TGF-β信号传导正常化并预防EndMT。在体外研究中,我们发现TN-X通过其纤维蛋白原样结构域直接与TGF-β相互作用,从而干扰其与TGF-β受体的结合。

结论

总之,我们表明TN-X是血流诱导的EndMT抑制、内皮炎症和动脉粥样硬化发生的中心介质,其通过结合并阻断TGF-β的活性发挥作用。我们的数据确定了血管TGF-β血流依赖性调节的新机制,这为产生预防血管炎症和动脉粥样硬化的新策略带来了希望。

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