MCPIP1 promotes atrial remodeling by exacerbating miR-26a-5p/FRAT/Wnt axis–mediated atrial fibrosis in a rat model susceptible to atrial fibrillation

IF 4.4 2区 生物学 Q2 BIOCHEMISTRY & MOLECULAR BIOLOGY
Kai Li, Huaxin Sun, Yakun Bo, Wanfeng Zhang, Wenchao Huang, Yang Zhao, Hang Yang, Yankai Guo, Xianhui Zhou, Yanmei Lu, Ling Zhang, Baopeng Tang
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Abstract

Atrial fibrosis plays a critical role in the pathogenesis of atrial fibrillation (AF). Monocyte chemotactic protein–induced protein-1 (MCPIP1), recognized as a functional ribonuclease (RNase), exacerbates cardiac remodeling and contributes to a range of cardiovascular diseases. However, the involvement of MCPIP1 in atrial fibrosis and development of AF, along with its underlying biological mechanisms, remains poorly understood. This study demonstrated that knockdown of MCPIP1 significantly reduced AF inducibility, decreased left atrial diameter, and ameliorated atrial fibrosis, coinciding with reduced FRAT1/2/Wnt/β-catenin signaling. Furthermore, the MCPIP1-D141N mutation attenuated AF vulnerability and atrial remodeling compared to MCPIP1 overexpression in an acetylcholine and calcium chloride (ACh-CaCl2)–induced rat model of AF. Conversely, overexpression of FRAT1/2 partially reversed the cardioprotective effects of MCPIP1-D141N mutation. Using H9C2 cell lines, we observed that MCPIP1 may induce a transcriptional effect that downregulates miR-26a-5p expression, and luciferase and RNA immunoprecipitation (RIP) assays substantiated the direct interaction between miR-26a-5p and FRAT1/2. Moreover, overexpression of miR-26a-5p countered MCPIP1-induced atrial remodeling and attenuated the progression of AF. In conclusion, these findings indicate that MCPIP1 facilitates atrial remodeling and the progression of AF by exacerbating miR-26a-5p/FRAT/Wnt axis–mediated atrial fibrosis through its RNase activity in an ACh-CaCl2–induced rat model of AF.

在易发生心房颤动的大鼠模型中,MCPIP1 通过加剧 miR-26a-5p/FRAT/Wnt 轴介导的心房纤维化来促进心房重塑
心房纤维化在心房颤动(房颤)的发病机制中起着至关重要的作用。单核细胞趋化蛋白诱导蛋白-1(MCPIP1)被认为是一种功能性核糖核酸酶(RNase),它能加剧心脏重塑并导致一系列心血管疾病。然而,人们对 MCPIP1 参与心房纤维化和房颤发生的情况及其潜在的生物学机制仍知之甚少。这项研究表明,敲除 MCPIP1 能显著降低房颤的诱发率、减小左心房直径并改善心房纤维化,这与 FRAT1/2/Wnt/β-catenin 信号的减少相吻合。此外,在乙酰胆碱和氯化钙(ACh-CaCl2)诱导的大鼠房颤模型中,与过表达 MCPIP1 相比,MCPIP1-D141N 突变可减轻房颤的脆弱性和心房重塑。相反,FRAT1/2 的过表达部分逆转了 MCPIP1-D141N 突变的心脏保护作用。利用 H9C2 细胞系,我们观察到 MCPIP1 可诱导下调 miR-26a-5p 表达的转录效应,荧光素酶和 RNA 免疫沉淀(RIP)测定证实了 miR-26a-5p 与 FRAT1/2 之间的直接相互作用。此外,miR-26a-5p 的过表达可对抗 MCPIP1 诱导的心房重塑,并减轻房颤的进展。总之,这些研究结果表明,在ACh-CaCl2-诱导的大鼠房颤模型中,MCPIP1通过其RNase活性加剧了miR-26a-5p/FRAT/Wnt轴介导的心房纤维化,从而促进了心房重塑和房颤的进展。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
FASEB Journal
FASEB Journal 生物-生化与分子生物学
CiteScore
9.20
自引率
2.10%
发文量
6243
审稿时长
3 months
期刊介绍: The FASEB Journal publishes international, transdisciplinary research covering all fields of biology at every level of organization: atomic, molecular, cell, tissue, organ, organismic and population. While the journal strives to include research that cuts across the biological sciences, it also considers submissions that lie within one field, but may have implications for other fields as well. The journal seeks to publish basic and translational research, but also welcomes reports of pre-clinical and early clinical research. In addition to research, review, and hypothesis submissions, The FASEB Journal also seeks perspectives, commentaries, book reviews, and similar content related to the life sciences in its Up Front section.
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