Upregulation of miR-128 Mediates Heart Injury by Activating Wnt/β-catenin Signaling Pathway in Heart Failure Mice.

IF 1.6 4区 生物学 Q4 BIOCHEMISTRY & MOLECULAR BIOLOGY
Organogenesis Pub Date : 2021-10-02 Epub Date: 2021-12-29 DOI:10.1080/15476278.2021.2020018
Jing-Yao Li, Xin-Chang Li, Yu-Long Tang
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引用次数: 5

Abstract

Cardiac hypertrophy contributes to heart failure and is pathogenically modulated by a network of signaling cascades including Wnt/β-catenin signaling pathway. miRNAs have been widely demonstrated to regulate gene expression in heart development. miR-128 was routinely found as a brain-enriched gene and has been functionally associated with regulation of cardiac function. However, its role and molecular mechanisms that regulate cardiac hypertrophy remain largely unclear. Adeno-associated virus serotype 9 (AAV9)-mediated constructs with miR-128 or anti-miR-128 were generated and delivered to overexpression or blockade of miR-128 in vivo followed by HF induction with isoproterenol (ISO) or transverse aortic constriction (TAC). Cardiac dysfunction and hypertrophy, coupled with involved gene and protein level, were then assessed. Our data found that miR-128, Wnt1, and β-catenin expressions were upregulated in both patients and mice model with HF. Interference with miR-128 reduces Wnt1/β-catenin expression in mouse failing hearts and ameliorates heart dysfunctional properties. We identified miR-128 directly targets to Axin1, an inhibitor of Wnt/β-catenin signaling, and suppresses its inhibition on Wnt1/β-catenin. Our study provides evidence indicating miR-128 as an inducer of HF and cardiac hypertrophy by enhancing Wnt1/β-catenin in an Axin1-dependent nature. We thus suggest miR-128 has potential value in the treatment of heart failure.

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miR-128上调通过激活Wnt/β-catenin信号通路介导心力衰竭小鼠心脏损伤
心脏肥厚可导致心力衰竭,并可通过包括Wnt/β-catenin信号通路在内的信号级联网络进行病理调节。mirna已被广泛证明在心脏发育过程中调节基因表达。miR-128通常被发现是一种大脑富集基因,并且在功能上与心功能的调节相关。然而,其调节心肌肥厚的作用和分子机制仍不清楚。生成腺相关病毒血清型9 (AAV9)介导的miR-128或anti-miR-128构建物,并在体内传递miR-128过表达或阻断,然后用异丙肾上腺素(ISO)或主动脉横缩(TAC)诱导HF。然后评估心功能障碍和肥厚,以及相关基因和蛋白质水平。我们的数据发现,在HF患者和小鼠模型中,miR-128、Wnt1和β-catenin的表达均上调。干扰miR-128可降低小鼠衰竭心脏中Wnt1/β-catenin的表达并改善心脏功能障碍特性。我们发现miR-128直接靶向Wnt/β-catenin信号抑制剂Axin1,并抑制其对Wnt1/β-catenin的抑制作用。我们的研究提供了证据,表明miR-128通过增强Wnt1/β-catenin,以依赖于axin1的方式诱导HF和心脏肥厚。因此,我们认为miR-128在治疗心力衰竭方面具有潜在的价值。
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来源期刊
Organogenesis
Organogenesis BIOCHEMISTRY & MOLECULAR BIOLOGY-DEVELOPMENTAL BIOLOGY
CiteScore
4.10
自引率
4.30%
发文量
6
审稿时长
>12 weeks
期刊介绍: Organogenesis is a peer-reviewed journal, available in print and online, that publishes significant advances on all aspects of organ development. The journal covers organogenesis in all multi-cellular organisms and also includes research into tissue engineering, artificial organs and organ substitutes. The overriding criteria for publication in Organogenesis are originality, scientific merit and general interest. The audience of the journal consists primarily of researchers and advanced students of anatomy, developmental biology and tissue engineering. The emphasis of the journal is on experimental papers (full-length and brief communications), but it will also publish reviews, hypotheses and commentaries. The Editors encourage the submission of addenda, which are essentially auto-commentaries on significant research recently published elsewhere with additional insights, new interpretations or speculations on a relevant topic. If you have interesting data or an original hypothesis about organ development or artificial organs, please send a pre-submission inquiry to the Editor-in-Chief. You will normally receive a reply within days. All manuscripts will be subjected to peer review, and accepted manuscripts will be posted to the electronic site of the journal immediately and will appear in print at the earliest opportunity thereafter.
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