Suppr超能文献

内皮细胞衍生的微泡通过一种需要组织因子和PAR2激活的机制促进与平滑肌细胞的促迁移相互作用。

Endothelial-derived microvesicles promote pro-migratory cross-talk with smooth muscle cells by a mechanism requiring tissue factor and PAR2 activation.

作者信息

Featherby Sophie J, Ettelaie Camille

机构信息

Biomedical Section, Hull-York Medical School, Hull, United Kingdom.

出版信息

Front Cardiovasc Med. 2024 Jun 20;11:1365008. doi: 10.3389/fcvm.2024.1365008. eCollection 2024.

Abstract

INTRODUCTION

Microvesicles (MV) released by endothelial cells (EC) following injury or inflammation contain tissue factor (TF) and mediate communication with the underlying smooth muscle cells (SMC). Ser253-phosphorylated TF co-localizes with filamin A at the leading edge of migrating SMC. In this study, the influence of endothelial-derived TF-MV, on human coronary artery SMC (HCASMC) migration was examined.

METHODS AND RESULTS

MV derived from human coronary artery EC (HCAEC) expressing TF accelerated HCASMC migration, but was lower with cytoplasmic domain-deleted TF. Furthermore, incubation with TF-MV, or expression of TF in HCASMC, reduced cell migration. Blocking TF-factor VIIa (TF-fVIIa) procoagulant/protease activity, or inhibiting PAR2 signaling on HCASMC, abolished the accelerated migration. Incubation with fVIIa alone increased HCASMC migration, but was significantly enhanced on supplementation with TF. Neither recombinant TF alone, factor Xa, nor PAR2-activating peptide (SLIGKV) influenced cell migration. In other experiments, HCASMC were transfected with peptides corresponding to the cytoplasmic domain of TF prior to stimulation with TF-fVIIa. Cell migration was suppressed only when the peptides were phosphorylated at position of Ser253. Expression of mutant forms of filamin A in HCASMC indicated that the enhancement of migration by TF but not by PDGF-BB, was dependent on the presence of repeat-24 within filamin A. Incubation of HCASMC with TF-MV significantly reduced the levels of Smoothelin-B protein, and upregulated expression.

DISCUSSION

In conclusion, Ser253-phosphorylated TF and fVIIa released as MV-cargo by EC, act in conjunction with PAR2 on SMC to promote migration and may be crucial for normal arterial homeostasis as well as, during development of vascular disease.

摘要

引言

内皮细胞(EC)在损伤或炎症后释放的微泡(MV)含有组织因子(TF),并介导与下层平滑肌细胞(SMC)的通讯。Ser253磷酸化的TF与细丝蛋白A在迁移的SMC前缘共定位。在本研究中,检测了内皮来源的TF-MV对人冠状动脉SMC(HCASMC)迁移的影响。

方法与结果

源自表达TF的人冠状动脉EC(HCAEC)的MV加速了HCASMC的迁移,但胞质结构域缺失的TF则作用较弱。此外,用TF-MV孵育或在HCASMC中表达TF可减少细胞迁移。阻断TF-因子VIIa(TF-fVIIa)的促凝/蛋白酶活性,或抑制HCASMC上的PAR2信号传导,可消除加速的迁移。单独用fVIIa孵育可增加HCASMC的迁移,但补充TF后显著增强。单独的重组TF、因子Xa或PAR2激活肽(SLIGKV)均不影响细胞迁移。在其他实验中,在用TF-fVIIa刺激之前,用与TF胞质结构域对应的肽转染HCASMC。仅当肽在Ser253位置磷酸化时,细胞迁移才受到抑制。在HCASMC中表达细丝蛋白A的突变形式表明,TF而非PDGF-BB对迁移的增强作用取决于细丝蛋白A中重复序列24的存在。用TF-MV孵育HCASMC可显著降低平滑肌蛋白B的水平,并上调其表达。

讨论

总之,EC作为MV货物释放的Ser253磷酸化的TF和fVIIa与PAR2共同作用于SMC以促进迁移,这可能对正常动脉内环境稳定以及血管疾病发展过程至关重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9e00/11222581/b6597a015add/fcvm-11-1365008-g001.jpg

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验