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USP10 mitigates Ang II–induced atrial remodeling and atrial fibrillation susceptibility by deubiquitinating NDUFS1
Wanrong Fu, Xiao-Xu Tian, Jianghua Zhou, Yu-Xu Huang, Huan Li, Zhenya Wang, Tong-You Wade Wei, Li Li, Guo-Jun Zhao
Wanrong Fu, Xiao-Xu Tian, Jianghua Zhou, Yu-Xu Huang, Huan Li, Zhenya Wang, Tong-You Wade Wei, Li Li, Guo-Jun Zhao
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Research Article Cardiology Vascular biology

USP10 mitigates Ang II–induced atrial remodeling and atrial fibrillation susceptibility by deubiquitinating NDUFS1

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Abstract

Atrial fibrillation (AF) contributes to cardiovascular morbidity and mortality. Ubiquitin-specific peptidase 10 (USP10) plays a crucial role in numerous cellular processes; however, its particular role in AF remains largely unexplored. In the present study, USP10 expression was assessed in human atrial samples and angiotensin II–treated (Ang II–treated) mouse atrial tissues. An Ang II–induced AF mouse model was employed to investigate the effects of USP10 on atrial remodeling and AF susceptibility. Calcium imaging and patch clamp techniques were used to evaluate USP10’s influence on calcium handling and triggered activity. Additionally, RNA sequencing, coimmunoprecipitation, and ubiquitination assays were performed to explore the regulatory interactions between USP10 and NADH:ubiquinone oxidoreductase subunit S1 (NDUFS1). Our findings demonstrate that USP10 is downregulated in atrial tissues from mouse models and patients with AF. USP10 overexpression counteracts Ang II–induced atrial remodeling and reduces AF susceptibility. Furthermore, USP10 contributes to the restoration of mitochondrial function in AF. Mechanistically, USP10 deubiquitinates NDUFS1 at lysine 621, stabilizing NDUFS1 protein levels and mitigating Ang II–induced mitochondrial dysfunction. This study uncovers a critical mechanistic link between USP10 and NDUFS1. Our findings suggest that upregulating USP10 or targeting NDUFS1 degradation could provide an alternative therapeutic strategy to mitigate AF progression and associated cardiovascular risk.

Authors

Wanrong Fu, Xiao-Xu Tian, Jianghua Zhou, Yu-Xu Huang, Huan Li, Zhenya Wang, Tong-You Wade Wei, Li Li, Guo-Jun Zhao

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Figure 1

USP10 is decreased in patients with AF and Ang II–treated atrial cardiomyocytes.

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USP10 is decreased in patients with AF and Ang II–treated atrial cardiom...
(A)The expression levels of USP10 in atrial tissues from patients with AF (n = 10) and SR controls (n = 20). (B) qPCR analysis of USP10 mRNA levels in atrial tissues from patients with AF and SR controls (n = 5/group). (C) Western blot and quantification of USP10 protein levels in atrial tissues from patients with AF and SR controls (n = 5/group). (D) qPCR analysis of Usp10 mRNA levels in atrial tissues from mice treated with Ang II or Veh (n = 4/group). (E) Representative Western blots and quantification of USP10 in atrial tissues from Ang II– or Veh-treated mice (n = 4/group). (F) Representative immunostaining images of atrial tissues from Ang II– or Veh-treated mice. Scale bar: 50 μm. (G) qPCR analysis of Usp10 mRNA levels in HL-1 atrial myocytes treated with Ang II or Veh (n = 3/group). (H) Representative Western blots and quantification of USP10 protein levels in Ang II– or Veh-treated HL-1 atrial myocytes (n = 3/group). Data represent mean ± SEM. All statistical comparisons were performed using a 2-tailed Student’s t test. **P < 0.01. USP10, ubiquitin-specific peptidase 10; FPKM, fragments per kilobase of exon per million mapped reads; qPCR, quantitative PCR; AF, atrial fibrillation; SR, sinus rhythm; Veh, vehicle; Ang II, angiotensin II.

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