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PHB2通过稳定TOMM40和调节线粒体形态功能稳态来保护小鼠免受压力超负荷诱导的心肌重塑。

PHB2 protects against pressure overload-induced myocardial remodeling in mice via stabilizing TOMM40 and regulating mitochondrial morphofunctional homeostasis.

作者信息

Li Dan, Li Jia-Hao, Guo Ying-Ying, Chen Ya-Jie, Zhang Meng, Xu Fei-Xue, Li Wan-Yi, Tang Qi-Zhu

机构信息

Department of Cardiology, Renmin Hospital of Wuhan University, Wuhan, 430060, China.

Hubei Key Laboratory of Metabolic and Chronic Diseases, Wuhan, 430060, China.

出版信息

Acta Pharmacol Sin. 2025 Jul 14. doi: 10.1038/s41401-025-01613-8.

Abstract

Myocardial remodeling is critical pathological processes in various cardiovascular diseases, where redox imbalance and mitochondrial bioenergetic perturbations emerge as key determinants. Prohibitin 2 (PHB2), which resides in the mitochondrial inner membrane, serves as a critical regulator of mitochondrial homeostasis. In this study we investigated the protective role of PHB2 in transverse aortic constriction (TAC)-induced cardiac remodeling with a particular focus on its ability to safeguard the heart by improving mitochondrial function and alleviating oxidative stress. We revealed that PHB2 expression was significantly decreased in the heart of TAC mice and in Ang II (1 μM)-treated cardiomyocytes. Cardiac-specific PHB2 overexpression mitigated TAC-induced cardiac remodeling, improving cardiac function and attenuating hypertrophy. Additionally, PHB2 overexpression effectively suppressed oxidative stress in the hearts of TAC mice, while improving mitochondrial morphology and the integrity of inner membrane structure. Furthermore, PHB2 overexpression restored mitochondrial function in Ang II-treated cardiomyocytes evidenced by elevated ATP levels and enhanced oxidative phosphorylation capacity. IP-MS analysis revealed that PHB2 directly interacted with Transporter of Outer Mitochondrial Membrane 40 (TOMM40) to regulate mitochondrial function. Importantly, silencing TOMM40 abolished the protective effects of PHB2. We demonstrated that PHB2 preserves TOMM40 protein levels predominantly through inhibition of ubiquitin-dependent proteasomal degradation. Collectively, we discover a new function of PHB2 in safeguarding mitochondrial morphofunctional homeostasis in response to pathological stress through facilitating TOMM40 stabilization, suggesting PHB2 as a promising therapeutic target for potential interventions in heart diseases. Schematic illustration of PHB2's potential protective mechanism against cardiac hypertrophy. PHB2 protects against pressure overload-induced cardiac hypertrophy through preserving TOMM40 protein to maintain mitochondrial energetic homeostasis.

摘要

心肌重塑是各种心血管疾病中的关键病理过程,其中氧化还原失衡和线粒体生物能量紊乱是关键决定因素。位于线粒体内膜的抑制素2(PHB2)是线粒体稳态的关键调节因子。在本研究中,我们研究了PHB2在横向主动脉缩窄(TAC)诱导的心脏重塑中的保护作用,特别关注其通过改善线粒体功能和减轻氧化应激来保护心脏的能力。我们发现,PHB2在TAC小鼠心脏和Ang II(1 μM)处理的心肌细胞中的表达显著降低。心脏特异性PHB2过表达减轻了TAC诱导的心脏重塑,改善了心脏功能并减轻了肥大。此外,PHB2过表达有效抑制了TAC小鼠心脏中的氧化应激,同时改善了线粒体形态和内膜结构的完整性。此外,PHB2过表达恢复了Ang II处理的心肌细胞中的线粒体功能,这通过ATP水平升高和氧化磷酸化能力增强得到证明。免疫沉淀-质谱分析显示,PHB2与线粒体外膜转运体40(TOMM40)直接相互作用以调节线粒体功能。重要的是,沉默TOMM40消除了PHB2的保护作用。我们证明,PHB2主要通过抑制泛素依赖性蛋白酶体降解来维持TOMM40蛋白水平。总体而言,我们发现了PHB2在通过促进TOMM40稳定来响应病理应激时保护线粒体形态功能稳态的新功能,表明PHB2是心脏病潜在干预的有希望的治疗靶点。PHB2对心脏肥大的潜在保护机制示意图。PHB2通过保留TOMM40蛋白以维持线粒体能量稳态来预防压力超负荷诱导的心脏肥大。

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