NR4A3 prevents diabetes induced atrial cardiomyopathy by maintaining mitochondrial energy metabolism and reducing oxidative stress.

IF 9.7 1区 医学 Q1 MEDICINE, RESEARCH & EXPERIMENTAL EBioMedicine Pub Date : 2024-08-01 Epub Date: 2024-08-03 DOI:10.1016/j.ebiom.2024.105268
Hong Peng, Jiali Yuan, Zhengshuai Wang, Binfeng Mo, Yihui Wang, Yuepeng Wang, Qunshan Wang
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Abstract

Background: Atrial cardiomyopathy (ACM) is responsible for atrial fibrillation (AF) and thromboembolic events. Diabetes mellitus (DM) is an important risk factor for ACM. However, the potential mechanism between ACM and DM remains elusive.

Methods: Atrial tissue samples were obtained from patients diagnosed with AF or sinus rhythm (SR) to assess alterations in NR4A3 expression, and then two distinct animal models were generated by subjecting Nr4a3-/- mice and WT mice to a high-fat diet (HFD) and Streptozotocin (STZ), while db/db mice were administered AAV9-Nr4a3 or AAV9-ctrl. Subsequently, in vivo and in vitro experiments were conducted to assess the impact of NR4A3 on diabetes-induced atrial remodeling through electrophysiological, biological, and histological analyses. RNA sequencing (RNA-seq) and metabolomics analysis were employed to unravel the downstream mechanisms.

Findings: The expression of NR4A3 was significantly decreased in atrial tissues of both AF patients and diabetic mice compared to their respective control groups. NR4A3 deficiency exacerbated atrial hypertrophy and atrial fibrosis, and increased susceptibility to pacing-induced AF. Conversely, overexpression of NR4A3 alleviated atrial structural remodeling and reduced AF induction rate. Mechanistically, we confirmed that NR4A3 improves mitochondrial energy metabolism and reduces oxidative stress injury by preserving the transcriptional expression of Sdha, thereby exerting a protective influence on atrial remodeling induced by diabetes.

Interpretation: Our data confirm that NR4A3 plays a protective role in atrial remodeling caused by diabetes, so it may be a new target for treating ACM.

Funding: This study was supported by the major research program of National Natural Science Foundation of China (NSFC) No: 82370316 (to Q-S. W.), No. 81974041 (to Y-P. W.), and No. 82270447 (to Y-P. W.) and Fundation of Shanghai Hospital Development Center (No. SHDC2022CRD044 to Q-S. W.).

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NR4A3 可通过维持线粒体能量代谢和减少氧化应激预防糖尿病诱发的心房心肌病。
背景:心房肌病(ACM)是心房颤动(AF)和血栓栓塞事件的罪魁祸首。糖尿病(DM)是导致心房颤动的重要危险因素。然而,ACM 与糖尿病之间的潜在机制仍不明确:方法:从确诊为房颤或窦性心律(SR)的患者身上获取心房组织样本,以评估 NR4A3 表达的改变,然后将 Nr4a3-/- 小鼠和 WT 小鼠置于高脂饮食(HFD)和链脲佐菌素(STZ)中,同时给 db/db 小鼠注射 AAV9-Nr4a3 或 AAV9-ctrl,从而产生两种不同的动物模型。随后进行了体内和体外实验,通过电生理学、生物学和组织学分析评估 NR4A3 对糖尿病诱导的心房重塑的影响。研究还采用了RNA测序(RNA-seq)和代谢组学分析来揭示下游机制:研究结果:与对照组相比,房颤患者和糖尿病小鼠心房组织中 NR4A3 的表达均显著下降。NR4A3 缺乏会加剧心房肥大和心房纤维化,并增加起搏诱导房颤的易感性。相反,过表达 NR4A3 可减轻心房结构重塑并降低房颤诱发率。从机理上讲,我们证实了 NR4A3 可通过保护 Sdha 的转录表达,改善线粒体能量代谢,减少氧化应激损伤,从而对糖尿病诱导的心房重塑产生保护性影响:我们的数据证实,NR4A3在糖尿病引起的心房重塑中起保护作用,因此它可能是治疗ACM的新靶点:本研究得到了国家自然科学基金重大研究计划(编号:82370316,Q-S. W.)、国家自然科学基金重大研究计划(编号:81974041,Y-P. W.)和国家自然科学基金重大研究计划(编号:82270447,Y-P. W.)以及上海市医院发展中心基金(编号:SHDC2022CRD044,Q-S. W.)的资助。
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
EBioMedicine
EBioMedicine Biochemistry, Genetics and Molecular Biology-General Biochemistry,Genetics and Molecular Biology
CiteScore
17.70
自引率
0.90%
发文量
579
审稿时长
5 weeks
期刊介绍: eBioMedicine is a comprehensive biomedical research journal that covers a wide range of studies that are relevant to human health. Our focus is on original research that explores the fundamental factors influencing human health and disease, including the discovery of new therapeutic targets and treatments, the identification of biomarkers and diagnostic tools, and the investigation and modification of disease pathways and mechanisms. We welcome studies from any biomedical discipline that contribute to our understanding of disease and aim to improve human health.
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