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Melatonin differentially regulates pathological and physiological cardiac hypertrophy: Crucial role of circadian nuclear receptor RORα signaling

机译:褪黑激素差异调节病理和生理心脏肥大:昼夜核受体RORα信号传导的关键作用

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摘要

Abstract Exercise‐induced physiological hypertrophy provides protection against cardiovascular disease, whereas disease‐induced pathological hypertrophy leads to heart failure. Emerging evidence suggests pleiotropic roles of melatonin in cardiac disease; however, the effects of melatonin on physiological vs pathological cardiac hypertrophy remain unknown. Using swimming‐induced physiological hypertrophy and pressure overload‐induced pathological hypertrophy models, we found that melatonin treatment significantly improved pathological hypertrophic responses accompanied by alleviated oxidative stress in myocardium but did not affect physiological cardiac hypertrophy and oxidative stress levels. As an important mediator of melatonin, the retinoid‐related orphan nuclear receptor‐α (RORα) was significantly decreased in human and murine pathological hypertrophic cardiomyocytes, but not in swimming‐induced physiological hypertrophic murine hearts. In vivo and in vitro loss‐of‐function experiments indicated that RORα deficiency significantly aggravated pathological cardiac hypertrophy, and notably weakened the anti‐hypertrophic effects of melatonin. Mechanistically, RORα mediated the cardioprotection of melatonin in pathological hypertrophy mainly by transactivation of manganese‐dependent superoxide dismutase (MnSOD) via binding to the RORα response element located in the promoter region of the MnSOD gene. Furthermore, MnSOD overexpression reversed the pro‐hypertrophic effects of RORα deficiency, while MnSOD silencing abolished the anti‐hypertrophic effects of RORα overexpression in pathological cardiac hypertrophy. Collectively, our findings provide the first evidence that melatonin exerts an anti‐hypertrophic effect on pathological but not physiological cardiac hypertrophy via alleviating oxidative stress through transactivation of the antioxidant enzyme MnSOD in a RORα‐dependent manner.
机译:摘要运动诱导的生理肥大提供防止心血管疾病的保护,而疾病诱导的病理肥大导致心力衰竭。新兴的证据表明褪黑素在心脏病中的敏捷作用;然而,褪黑素对生理VS病理心脏肥厚的影响仍然未知。使用游泳诱导的生理肥大和压力过载诱导的病理肥大模型,我们发现褪黑激素治疗显着提高了病态肥厚反应伴随着肌动态氧化应激,但不影响生理心脏肥大和氧化应激水平。作为褪黑激素的重要介体,在人和鼠病理肥厚性心肌细胞和鼠病理肥厚性心肌细胞中,无类含有的孤儿核受体-α(RORα)显着降低,但不在游泳诱导的生理肥厚鼠心中。体内和体外丧失函数实验表明,RORα缺乏显着加剧了病理心脏肥大,并且显着削弱了褪黑素的抗肥厚效应。机械地,RORα介导褪黑素在病理肥大中的心脏保护,主要是通过与位于MNSOD基因的启动子区域中的RORα响应元件的结合的结合而转移到锰依赖性超氧化物歧化酶(MNSOD)。此外,MNSOD过度表达逆转了RORα缺乏的促肥大效应,而MNSOD沉默废除了RORα过表达在病理心脏肥大中的抗肥厚效应。集体,我们的研究结果提供了褪黑素对病态而不是生理心脏肥厚的第一种证据,通过减轻抗氧化酶MnSOD以RORα依赖性的方式进行氧化胁迫。

著录项

  • 来源
    《Journal of pineal research》 |2019年第2期|共21页
  • 作者单位

    State Key Laboratory for Oncogenes and Related Genes Division of CardiologyRenji Hospital School;

    State Key Laboratory for Oncogenes and Related Genes Division of CardiologyRenji Hospital School;

    State Key Laboratory for Oncogenes and Related Genes Division of CardiologyRenji Hospital School;

    State Key Laboratory for Oncogenes and Related Genes Division of CardiologyRenji Hospital School;

    State Key Laboratory for Oncogenes and Related Genes Division of CardiologyRenji Hospital School;

    State Key Laboratory for Oncogenes and Related Genes Division of CardiologyRenji Hospital School;

    State Key Laboratory for Oncogenes and Related Genes Division of CardiologyRenji Hospital School;

    State Key Laboratory for Oncogenes and Related Genes Division of CardiologyRenji Hospital School;

    State Key Laboratory for Oncogenes and Related Genes Division of CardiologyRenji Hospital School;

    State Key Laboratory for Oncogenes and Related Genes Division of CardiologyRenji Hospital School;

    State Key Laboratory for Oncogenes and Related Genes Division of CardiologyRenji Hospital School;

    Beijing Laboratory for Cardiovascular Precision Medicine The Key Laboratory of Remodeling‐Related;

    Beijing Laboratory for Cardiovascular Precision Medicine The Key Laboratory of Remodeling‐Related;

    State Key Laboratory for Oncogenes and Related Genes Division of CardiologyRenji Hospital School;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 内分泌腺疾病及代谢病;
  • 关键词

    cardiac hypertrophy; melatonin; oxidative stress; retinoid‐related orphan nuclear receptor;

    机译:心脏肥大;褪黑素;氧化应激;类含有类含有的孤儿核受体;
  • 入库时间 2022-08-20 09:55:52

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