Circulating miRNA-4701-3p as a predictive biomarker of cardiovascular disease which induces angiogenesis by inhibition of TOB2

IF 2.9 4区 医学 Q2 PERIPHERAL VASCULAR DISEASE Microvascular research Pub Date : 2024-05-25 DOI:10.1016/j.mvr.2024.104698
Seung Min Lee , Bo Hyun Yoon , Jin Woo Lee , I. Jin-Yong Jeong , Inki Kim , Chan-Gi Pack , Young-Hak Kim , Chang Hoon Ha
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Abstract

Angiogenesis is mainly regulated by the delivery of VEGF-dependent signaling to cells. However, the angiogenesis mechanism regulated by VEGF-induced miRNA is still not understood. After VEGF treatment in HUVECs, we screened the changed miRNAs through small-RNA sequencing and found VEGF-induced miR-4701-3p. Furthermore, the GFP reporter gene was used to reveal that TOB2 expression was regulated by miR-4701-3p, and it was found that TOB2 and miR-4701-3p modulation could cause angiogenesis in an in-vitro angiogenic assay. Through the luciferase assay, it was confirmed that the activation of the angiogenic transcription factor MEF2 was regulated by the suppression and overexpression of TOB2 and miR-4701-3p. As a result, MEF2 downstream gene mRNAs that induce angiogenic function were regulated. We used the NCBI GEO datasets to reveal that the expression of TOB2 and MEF2 was significantly changed in cardiovascular disease. Finally, it was confirmed that the expression of circulating miR-4701-3p in the blood of myocardial infarction patients was remarkably increased. In patients with myocardial infarction, circulating miR-4701-3p was increased regardless of age, BMI, and sex, and showed high AUC levels in specificity and sensitivity analysis (AUROC) (AUC = 0.8451, 95 % CI 0.78–0.90). Our data showed TOB2-mediated modulation of MEF2 and its angiogenesis by VEGF-induced miR-4701-3p in vascular endothelial cells. In addition, through bioinformatics analysis using GEO data, changes in TOB2 and MEF2 were revealed in cardiovascular disease. We suggest that circulating miR-4701-3p has high potential as a biomarker for myocardial infarction.

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循环 miRNA-4701-3p 作为心血管疾病的预测性生物标志物,可通过抑制 TOB2 诱导血管生成。
血管生成主要通过向细胞传递依赖于血管内皮生长因子的信号来调控。然而,VEGF 诱导的 miRNA 对血管生成的调控机制尚不清楚。VEGF处理HUVECs后,我们通过小RNA测序筛选了发生变化的miRNA,发现了VEGF诱导的miR-4701-3p。此外,我们还利用 GFP 报告基因揭示了 TOB2 的表达受 miR-4701-3p 的调控,并在体外血管生成实验中发现 TOB2 和 miR-4701-3p 的调控可导致血管生成。通过荧光素酶实验,证实血管生成转录因子 MEF2 的激活受 TOB2 和 miR-4701-3p 的抑制和过表达调控。因此,诱导血管生成功能的 MEF2 下游基因 mRNA 也受到了调控。我们利用 NCBI GEO 数据集发现,在心血管疾病中,TOB2 和 MEF2 的表达发生了显著变化。最后,我们证实心肌梗塞患者血液中循环 miR-4701-3p 的表达明显增加。在心肌梗死患者中,无论年龄、体重指数和性别如何,循环 miR-4701-3p 都会增加,而且在特异性和敏感性分析(AUROC)中显示出很高的 AUC 水平(AUC = 0.8451,95 % CI 0.78-0.90)。我们的数据表明,在血管内皮细胞中,TOB2 介导的 MEF2 及其血管生成受 VEGF 诱导的 miR-4701-3p 的调节。此外,通过利用 GEO 数据进行生物信息学分析,还发现了 TOB2 和 MEF2 在心血管疾病中的变化。我们认为,循环中的 miR-4701-3p 很有可能成为心肌梗死的生物标志物。
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来源期刊
Microvascular research
Microvascular research 医学-外周血管病
CiteScore
6.00
自引率
3.20%
发文量
158
审稿时长
43 days
期刊介绍: Microvascular Research is dedicated to the dissemination of fundamental information related to the microvascular field. Full-length articles presenting the results of original research and brief communications are featured. Research Areas include: • Angiogenesis • Biochemistry • Bioengineering • Biomathematics • Biophysics • Cancer • Circulatory homeostasis • Comparative physiology • Drug delivery • Neuropharmacology • Microvascular pathology • Rheology • Tissue Engineering.
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