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PHB2 通过与 NDUFV2 相互作用和恢复线粒体复合物 I 功能来改善多柔比星诱导的心肌病。

PHB2 ameliorates Doxorubicin-induced cardiomyopathy through interaction with NDUFV2 and restoration of mitochondrial complex I function.

机构信息

Department of Cardiology, Zhongshan Hospital, Fudan University, Shanghai Institute of Cardiovascular Diseases, Shanghai, 200032, China; National Clinical Research Center for Interventional Medicine, Shanghai, 200032, China.

Cardiovascular Department, Shanghai Xuhui Central Hospital, Fudan University, Shanghai, 200031, China.

出版信息

Redox Biol. 2023 Sep;65:102812. doi: 10.1016/j.redox.2023.102812. Epub 2023 Jul 12.

Abstract

BACKGROUND

Doxorubicin (DOX) is among the most widely employed antitumor agents, although its clinical applications have been largely hindered by severe cardiotoxicity. Earlier studies described an essential role of mitochondrial injury in the pathogenesis of DOX cardiomyopathy. PHB2 (Prohibitin 2) is perceived as an essential regulator for mitochondrial dynamics and oxidative phosphorylation (OXPHOS) although its involvement in DOX cardiomyopathy remains elusive.

METHODS

To decipher the possible role of PHB2 in DOX cardiomyopathy, tamoxifen-induced cardiac-specific PHB2 conditional knockout mice were generated and subjected to DOX challenge. Cardiac function and mitochondrial profiles were examined. Screening of downstream mediators of PHB2 was performed using proteomic profiling and bioinformatic analysis, and was further verified using co-immunoprecipitation and pulldown assays.

RESULTS

Our data revealed significantly downregulated PHB2 expression in DOX-challenged mouse hearts. PHB2 mice were more susceptible to DOX cardiotoxicity compared with PHB2 mice, as evidenced by more pronounced cardiac atrophy, interstitial fibrosis and decrease in left ventricular ejection fraction and fractional shortening. Mechanistically, PHB2 deficiency resulted in the impairment of mitochondrial bioenergetics and oxidative phosphorylation in DOX cardiotoxicity. Proteomic profiling and interactome analyses revealed that PHB2 interacted with NDUFV2 (NADH-ubiquinone oxidoreductase core subunit V2), a key subunit of mitochondrial respiratory Complex I to mediate regulatory property of PHB2 on mitochondrial metabolism. PHB2 governed the expression of NDUFV2 by promoting its stabilization, while PHB2 deficiency significantly downregulated NDUFV2 in DOX-challenged hearts. Cardiac overexpression of PHB2 alleviated mitochondrial defects in DOX cardiomyopathy both in vivo and in vitro.

CONCLUSIONS

Our study defined a novel role for PHB2 in mitochondrial dynamics and energetic metabolism through interacting with NDUFV2 in DOX-challenged hearts. Forced overexpression of PHB2 may be considered a promising therapeutic approach for patients with DOX cardiomyopathy.

摘要

背景

多柔比星(DOX)是应用最广泛的抗肿瘤药物之一,但其临床应用受到严重心脏毒性的限制。早期研究表明,线粒体损伤在 DOX 心肌病的发病机制中起关键作用。PHB2(Prohibitin 2)被认为是线粒体动力学和氧化磷酸化(OXPHOS)的重要调节因子,但其在 DOX 心肌病中的作用仍不清楚。

方法

为了解 PHB2 在 DOX 心肌病中的可能作用,我们构建了 tamoxifen 诱导的心脏特异性 PHB2 条件性敲除小鼠,并对其进行 DOX 处理。检测心脏功能和线粒体特征。通过蛋白质组学谱分析和生物信息学分析筛选 PHB2 的下游介质,并通过免疫共沉淀和下拉实验进一步验证。

结果

我们的数据显示,DOX 处理的小鼠心脏中 PHB2 的表达明显下调。与 PHB2 小鼠相比,PHB2 小鼠对 DOX 毒性更敏感,表现为心脏萎缩、间质纤维化和左心室射血分数和缩短分数降低更为明显。机制上,PHB2 缺乏导致 DOX 心脏毒性中线粒体生物能学和氧化磷酸化受损。蛋白质组学谱分析和互作分析显示,PHB2 与线粒体呼吸复合物 I 的关键亚基 NDUFV2(NADH-泛醌氧化还原酶核心亚基 V2)相互作用,调节 PHB2 对线粒体代谢的调节作用。PHB2 通过促进其稳定性来调节 NDUFV2 的表达,而 PHB2 缺乏可显著下调 DOX 处理心脏中的 NDUFV2。在体内和体外,心脏过表达 PHB2 均可缓解 DOX 心肌病中的线粒体缺陷。

结论

本研究通过在 DOX 处理的心脏中与 NDUFV2 相互作用,定义了 PHB2 在线粒体动力学和能量代谢中的新作用。强制过表达 PHB2 可能被认为是 DOX 心肌病患者有前途的治疗方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e61c/10366351/bac31eb5901c/gr1.jpg

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