The protective effect of high mobility group protein HMGA2 in pressure overload-induced cardiac remodeling

HMGA2型 压力过载 基因敲除 心室重构 心肌保护 内科学 医学 下调和上调 心脏病学 内分泌学 心力衰竭 生物 心肌梗塞 基因 小RNA 心肌肥大 生物化学
作者
Qingqing Wu,Yang Xiao,Chen Liu,Mingxia Duan,Zhulan Cai,Saiyang Xie,Yuan Yuan,Hai‐Ming Wu,Wei Deng,Qizhu Tang
出处
期刊:Journal of Molecular and Cellular Cardiology [Elsevier BV]
卷期号:128: 160-178 被引量:25
标识
DOI:10.1016/j.yjmcc.2019.01.027
摘要

High mobility group protein AT-hook 2 (HMGA2), an architectural transcription factor, has previously been reported to play an essential role in regulating the expression of many genes through architectural remodeling processes. However, the effects of HMGA2 on cardiovascular disease, especial cardiac remodeling, is unclear. This study was aimed at investigating the functional role of HMGA2 in pressure overload-induced cardiac remodeling. Mice that were subjected to aortic banding (AB) for 8 weeks developed myocardial hypertrophy and cardiac dysfunction, which were associated with altered expression of HMGA2. Cardiac-specific expression of the human HMGA2 gene in mice with an adeno-related virus 9 delivery system ameliorated cardiac remodeling and improve cardiac function in response to pressure overload by activating PPARγ/NRF2 signaling. Knockdown of HMGA2 by AAV9-shHMGA2 accelerated cardiac remodeling after 1 weeks of AB surgery. Additionally, knockdown of heart PPARγ largely abolished HMGA2 overexpression-mediated cardioprotection. HMGA2-mediated cardiomyocyte protection was largely abrogated by knocking down NRF2 and inhibiting PPARγ in cardiomyocytes. PPARγ activation was mediated by C/EBPβ, which directly interacted with HMGA2. Knocking down C/EBPβ offset the effects of HMGA2 on PPARγ activation and cardioprotection. These findings show that the overexpression of HMGA2 ameliorates the remodeling response to pressure overload, and they also imply that the upregulation of HMGA2 may become a treatment strategy in cardiac pathologies.
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