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Bves维持血管平滑肌细胞收缩表型,并通过依赖Dusp1的p38丝裂原活化蛋白激酶和ERK1/2信号通路预防移植血管病变。

Bves maintains vascular smooth muscle cell contractile phenotype and protects against transplant vasculopathy via Dusp1-dependent p38MAPK and ERK1/2 signaling.

作者信息

Liu Jin-Xin, Huang Tong, Xie Dawei, Yu Qihong

机构信息

Department of Otolaryngology-Head and Neck Surgery, Tongji Hospital, Tongji Medical College, Huazhong University of Science and Technology, Wuhan, China.

The Eight Affiliated Hospital, Sun Yat-sen University, Shenzhen, China.

出版信息

Atherosclerosis. 2022 Sep;357:20-32. doi: 10.1016/j.atherosclerosis.2022.08.010. Epub 2022 Aug 14.

Abstract

BACKGROUND AND AIMS

Vascular smooth muscle cell (VSMC) plasticity is tightly associated with the pathological process of vasculopathy. Blood vessel epicardial substance (Bves) has emerged as an important regulator of intracardiac vasculogenesis and organ homeostasis. However, the involvement and role of Bves in VSMC plasticity and neointimal lesion development remain unclear.

METHODS

We used an in vivo rat model of graft arteriosclerosis and in vitro PDGF-treated VSMCs and identified the novel VSMC contractile phenotype-related gene Bves using a transcriptomic analysis and literature search. In vitro knockdown and overexpression approaches were used to investigate the mechanisms underlying VSMC phenotypic plasticity. In vivo, VSMC-specific Bves overexpression in rat aortic grafts was generated to assess the physiological function of Bves in neointimal lesion development.

RESULTS

Here, we found that Bves expression was negatively regulated in aortic allografts in vivo and PDGF-treated VSMCs in vitro. The genetic knockdown of Bves dramatically inhibited, whereas Bves overexpression markedly promoted, the VSMC contractile phenotype. Furthermore, RNA sequencing unraveled a positive correlation between Bves and dual-specificity protein phosphatase 1 (Dusp1) expression in VSMCs. We found that Bves knockdown restrained Dusp1 expression, but enhanced p38MAPK and ERK1/2 activation, resulting in the loss of the VSMC contractile phenotype. In vivo, an analysis of a rat graft model confirmed that VSMC-specific Bves and Dusp1 overexpression in aortic allografts significantly attenuated neointimal lesion formation.

CONCLUSIONS

Bves maintains the VSMC contractile phenotype through Dusp1-dependent p38MAPK and ERK1/2 signaling, and protects against neointimal formation, underscoring the important role of Bves in preventing transplant vasculopathy.

摘要

背景与目的

血管平滑肌细胞(VSMC)可塑性与血管病变的病理过程密切相关。血管心外膜物质(Bves)已成为心内血管生成和器官稳态的重要调节因子。然而,Bves在VSMC可塑性和新生内膜病变发展中的参与情况及作用仍不清楚。

方法

我们使用了移植动脉硬化的体内大鼠模型和体外血小板衍生生长因子(PDGF)处理的VSMC,通过转录组分析和文献检索鉴定了新的VSMC收缩表型相关基因Bves。采用体外敲低和过表达方法研究VSMC表型可塑性的潜在机制。在体内,通过在大鼠主动脉移植物中特异性过表达VSMC的Bves来评估Bves在新生内膜病变发展中的生理功能。

结果

在此,我们发现体内主动脉同种异体移植物和体外PDGF处理的VSMC中Bves表达受到负调控。Bves的基因敲低显著抑制,而Bves过表达则显著促进VSMC收缩表型。此外,RNA测序揭示了VSMC中Bves与双特异性蛋白磷酸酶1(Dusp1)表达之间呈正相关。我们发现Bves敲低会抑制Dusp1表达,但增强p38丝裂原活化蛋白激酶(p38MAPK)和细胞外信号调节激酶1/2(ERK1/2)激活,导致VSMC收缩表型丧失。在体内,对大鼠移植物模型的分析证实,主动脉同种异体移植物中VSMC特异性Bves和Dusp1过表达显著减轻新生内膜病变形成。

结论

Bves通过依赖Dusp1的p38MAPK和ERK1/2信号维持VSMC收缩表型,并防止新生内膜形成,突出了Bves在预防移植血管病变中的重要作用。

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