Misoprostol treatment prevents hypoxia-induced cardiac dysfunction through a 14-3-3 and PKA regulatory motif on Bnip3

被引:0
|
作者
Matthew D. Martens
Nivedita Seshadri
Lucas Nguyen
Donald Chapman
Elizabeth S. Henson
Bo Xiang
Landon Falk
Arielys Mendoza
Sunil Rattan
Jared T. Field
Philip Kawalec
Spencer B. Gibson
Richard Keijzer
Ayesha Saleem
Grant M. Hatch
Christine A. Doucette
Jason M. Karch
Vernon W. Dolinsky
Ian M. Dixon
Adrian R. West
Christof Rampitsch
Joseph W. Gordon
机构
[1] University of Manitoba,Department of Human Anatomy and Cell Science
[2] Children’s Hospital Research Institute of Manitoba,Diabetes Research Envisioned and Accomplished in Manitoba (DREAM) Theme
[3] University of Manitoba,Department of Physiology and Pathophysiology
[4] University of Manitoba,Department of Biochemistry and Medical Genetics
[5] CancerCare Manitoba,The Research Institute in Oncology and Hematology
[6] University of Manitoba,Department of Pharmacology and Therapeutics
[7] Children’s Hospital Research Institute of Manitoba,Biology of Breathing (BoB) Theme
[8] Baylor College of Medicine,Department of Molecular Physiology and Biophysics, Cardiovascular Research Institute
[9] St. Boniface Research Centre,Institute for Cardiovascular Sciences
[10] University of Manitoba,Department of Surgery
[11] University of Manitoba,Faculty of Kinesiology and Recreation Management
[12] Morden Research & Development Centre,College of Nursing
[13] Agriculture and Agri-Food Canada,undefined
[14] University of Manitoba,undefined
来源
关键词
D O I
暂无
中图分类号
学科分类号
摘要
Systemic hypoxia is a common element in most perinatal emergencies and is a known driver of Bnip3 expression in the neonatal heart. Bnip3 plays a prominent role in the evolution of necrotic cell death, disrupting ER calcium homeostasis and initiating mitochondrial permeability transition (MPT). Emerging evidence suggests a cardioprotective role for the prostaglandin E1 analog misoprostol during periods of hypoxia, but the mechanisms for this protection are not completely understood. Using a combination of mouse and cell models, we tested if misoprostol is cardioprotective during neonatal hypoxic injury by altering Bnip3 function. Here we report that hypoxia elicits mitochondrial-fragmentation, MPT, reduced ejection fraction, and evidence of necroinflammation, which were abrogated with misoprostol treatment or Bnip3 knockout. Through molecular studies we show that misoprostol leads to PKA-dependent Bnip3 phosphorylation at threonine-181, and subsequent redistribution of Bnip3 from mitochondrial Opa1 and the ER through an interaction with 14-3-3 proteins. Taken together, our results demonstrate a role for Bnip3 phosphorylation in the regulation of cardiomyocyte contractile/metabolic dysfunction, and necroinflammation. Furthermore, we identify a potential pharmacological mechanism to prevent neonatal hypoxic injury.
引用
收藏
相关论文
共 50 条
  • [41] BNIP3 in hypoxia-induced mitophagy: Novel insights and promising target for non-alcoholic fatty liver disease
    Tian, Meiyuan
    Hou, Jing
    Liu, Zhe
    Li, Zhanquan
    Huang, Dengliang
    Zhang, Yaogang
    Ma, Yanyan
    INTERNATIONAL JOURNAL OF BIOCHEMISTRY & CELL BIOLOGY, 2024, 168
  • [42] MicroRNA-210 Protects PC-12 Cells Against Hypoxia-Induced Injury by Targeting BNIP3
    Luan, Yonggang
    Zhang, Xiaoli
    Zhang, Yongli
    Dong, Yubin
    FRONTIERS IN CELLULAR NEUROSCIENCE, 2017, 11
  • [43] Bnip3 mediates mitochondrial dysfunction via two distinct pathways in cardiac cells
    Kubli, Dieter A.
    Gustafsson, Asa B.
    CIRCULATION, 2006, 114 (18) : 261 - 261
  • [44] Misoprostol attenuates neonatal cardiomyocyte proliferation through Bnip3, perinuclear calcium signaling, and inhibition of glycolysis
    Martens, Matthew D.
    Field, Jared T.
    Seshadri, Nivedita
    Day, Chelsea
    Chapman, Donald
    Keijzer, Richard
    Doucette, Christine A.
    Hatch, Grant M.
    West, Adrian R.
    Ivanco, Tammy L.
    Gordon, Joseph W.
    JOURNAL OF MOLECULAR AND CELLULAR CARDIOLOGY, 2020, 146 : 19 - 31
  • [45] Accelerated upregulation of BNIP3 in isolated rat cardiac myocytes using the coverslip hypoxia model
    Pitts, KR
    Kerkof, K
    Derry, JM
    Toombs, CF
    JOURNAL OF MOLECULAR AND CELLULAR CARDIOLOGY, 2005, 38 (05) : 837 - 838
  • [46] BNIP3 up-regulation and mitochondrial dysfunction in manganese-induced neurotoxicity
    Prabhakaran, Krishnan
    Chapman, Gail D.
    Gunasekar, Palur G.
    NEUROTOXICOLOGY, 2009, 30 (03) : 414 - 422
  • [47] Bnip3 mediates doxorubicin-induced cardiac myocyte necrosis and mortality through changes in mitochondrial signaling
    Dhingra, Rimpy
    Margulets, Victoria
    Chowdhurya, Subir Roy
    Thliveris, James
    Jassal, Davinder
    Fernyhough, Paul
    Dorn, Gerald W., II
    Kirshenbaum, Lorrie A.
    PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2014, 111 (51) : E5537 - E5544
  • [48] Hyperoside protects against hypoxia/reoxygenation induced injury in cardiomyocytes by suppressing the Bnip3 expression
    Xiao, Rui
    Xiang, An-Li
    Pang, Hong-Bo
    Liu, Ke-Qiang
    GENE, 2017, 629 : 86 - 91
  • [49] Hypoxia-acidosis activated apoptosis of cardiac myocytes is mediated by MPTP opening and BNIP3 activation
    Kubasiak, L
    Discher, D
    Bishopric, NH
    Webster, KA
    CIRCULATION, 2001, 104 (17) : 203 - 203
  • [50] Akebia saponin D alleviates hepatic steatosis through BNip3 induced mitophagy
    Gong, Li-li
    Yang, Song
    Zhang, Wen
    Han, Fei-fei
    Lv, Ya-li
    Wan, Zi-Rui
    Liu, He
    Jia, Yang-jie
    Xuan, Ling-ling
    Liu, Li-hong
    JOURNAL OF PHARMACOLOGICAL SCIENCES, 2018, 136 (04) : 189 - 195