Cigarette smoke extract-induced mitochondria hyperfission and cardiomyocyte early senescence

  • NISHIMURA Akiyuki
    Division of Cardiocirculatory Signaling, National Institute for Physiological Sciences
  • ZHOU Liuchenzi
    Division of Cardiocirculatory Signaling, National Institute for Physiological Sciences
  • KATO Yuri
    Department of Physiology, Graduate School of Pharmaceutical Sciences, Kyushu University
  • ITO Tomoya
    Department of Physiology, Graduate School of Pharmaceutical Sciences, Kyushu University
  • IBUKI Yuko
    Graduate Division of Nutritional and Environmental Sciences, University of Shizuoka
  • NISHIDA Motohiro
    Division of Cardiocirculatory Signaling, National Institute for Physiological Sciences Department of Physiology, Graduate School of Pharmaceutical Sciences, Kyushu University

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Other Title
  • タバコ煙曝露による心筋ミトコンドリアの過剰分裂と早期老化機構の解明

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<p>Smoking is one of the most serious risk factors for cardiovascular diseases. Although cigarette mainstream and sidestream smoke are significant contributors to increased cardiovascular mortality and morbidity, the underlying mechanism is still unclear. Here, we report that exposure of rat neonatal cardiomyocytes to cigarette smoke extract (CSE) induces mitochondrial hyperfission-mediated myocardial senescence. CSE leads to mitochondrial fission and reactive oxygen species (ROS) production through the complex formation between mitochondrial fission factor Drp1 and actin-binding protein, filamin A. Pharmacological perturbation of interaction between Drp1 and filamin A by cilnidipine and gene knockdown of Drp1 or filamin A inhibited CSE-induced mitochondrial hyperfission and ROS production as well as myocardial senescence. We previously reported that Drp1 activity is controlled by supersulfide-induced Cys644 polysulfidation. The redox-sensitive Cys644 was critical for CSE-mediated interaction with filamin A. The administration of supersulfide donor, Na2S3 also improved mitochondrial hyperfission-mediated myocardial senescence induced by CSE. Our results suggest the important role of Drp1-filamin A complex formation on cigarette smoke-mediated cardiac risk and the contribution of supersulfide to mitochondrial fission-associated myocardial senescence.</p>

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