Mitochondrial ROS Drive Sudden Cardiac Death and Chronic Proteome Remodeling in Heart Failure

被引:196
作者
Dey, Swati [1 ]
DeMazumder, Deeptankar [1 ,2 ]
Sidor, Agnieszka [1 ]
Foster, D. Brian [1 ]
O'Rourke, Brian [1 ]
机构
[1] Johns Hopkins Univ, Div Cardiol, Dept Med, 720 Rutland Ave,Ross 1060, Baltimore, MD 21205 USA
[2] Univ Cincinnati, Div Cardiol, Dept Med, Cincinnati, OH USA
基金
美国国家卫生研究院;
关键词
heart failure; mitochondria; phosphorylation; proteomics; reactive oxygen species; ventricular fibrillation; RANDOMIZED CONTROLLED-TRIAL; PERCUTANEOUS CORONARY INTERVENTION; ELEVATION MYOCARDIAL-INFARCTION; TARGETED ANTIOXIDANT SKQ1; GUINEA-PIG MODEL; OXIDATIVE STRESS; REPERFUSION INJURY; PRESSURE-OVERLOAD; IN-VIVO; CARDIOVASCULAR-DISEASE;
D O I
10.1161/CIRCRESAHA.118.312708
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
Rationale: Despite increasing prevalence and incidence of heart failure (HF), therapeutic options remain limited. In early stages of HF, sudden cardiac death (SCD) from ventricular arrhythmias claims many lives. Reactive oxygen species (ROS) have been implicated in both arrhythmias and contractile dysfunction. However, little is known about how ROS in specific subcellular compartments contribute to HF or SCD pathophysiology. The role of ROS in chronic proteome remodeling has not been explored. Objective: We will test the hypothesis that elevated mitochondrial ROS (mROS) is a principal source of oxidative stress in HF and in vivo reduction of mROS mitigates SCD. Methods and Results: Using a unique guinea pig model of nonischemic HF that recapitulates important features of human HF, including prolonged QT interval and high incidence of spontaneous arrhythmic SCD, compartment-specific ROS sensors revealed increased mROS in resting and contracting left ventricular myocytes in failing hearts. Importantly, the mitochondrially targeted antioxidant (MitoTEMPO) normalized global cellular ROS. Further, in vivo MitoTEMPO treatment of HF animals prevented and reversed HF, eliminated SCD by decreasing dispersion of repolarization and ventricular arrhythmias, suppressed chronic HF-induced remodeling of the expression proteome, and prevented specific phosphoproteome alterations. Pathway analysis of mROS-sensitive networks indicated that increased mROS in HF disrupts the normal coupling between cytosolic signals and nuclear gene programs driving mitochondrial function, antioxidant enzymes, Ca2+ handling, and action potential repolarization, suggesting new targets for therapeutic intervention. Conclusions: mROS drive both acute emergent events, such as electrical instability responsible for SCD, and those that mediate chronic HF remodeling, characterized by suppression or altered phosphorylation of metabolic, antioxidant, and ion transport protein networks. In vivo reduction of mROS prevents and reverses electrical instability, SCD, and HF. Our findings support the feasibility of targeting the mitochondria as a potential new therapy for HF and SCD while identifying new mROS-sensitive protein modifications. .
引用
收藏
页码:356 / 371
页数:16
相关论文
共 79 条
[1]   Targeting an antioxidant to mitochondria decreases cardiac ischemia-reperfusion injury [J].
Adlam, VJ ;
Harrison, JC ;
Porteous, CM ;
James, AM ;
Smith, RAJ ;
Murphy, MP ;
Sammut, IA .
FASEB JOURNAL, 2005, 19 (09) :1088-1095
[2]   The Global Health and Economic Burden of Hospitalizations for Heart Failure Lessons Learned From Hospitalized Heart Failure Registries [J].
Ambrosy, Andrew P. ;
Fonarow, Gregg C. ;
Butler, Javed ;
Chioncel, Ovidiu ;
Greene, Stephen J. ;
Vaduganathan, Muthiah ;
Nodari, Savina ;
Lam, Carolyn S. P. ;
Sato, Naoki ;
Shah, Ami N. ;
Gheorghiade, Mihai .
JOURNAL OF THE AMERICAN COLLEGE OF CARDIOLOGY, 2014, 63 (12) :1123-1133
[3]   Effects of the mitochondria-targeted antioxidant SkQ1 on lifespan of rodents [J].
Anisimov, Vladimir N. ;
Egorov, Maxim V. ;
Krasilshchikova, Marina S. ;
Lyamzaev, Konstantin G. ;
Manskikh, Vasily N. ;
Moshkin, Mikhail P. ;
Novikov, Evgeny A. ;
Popovich, Irina G. ;
Rogovin, Konstantin A. ;
Shabalina, Irina G. ;
Shekarova, Olga N. ;
Skulachev, Maxim V. ;
Titova, Tatiana V. ;
Vygodin, Vladimir A. ;
Vyssokikh, Mikhail Yu. ;
Yurova, Maria N. ;
Zabezhinsky, Mark A. ;
Skulachev, Vladimir P. .
AGING-US, 2011, 3 (11) :1110-1119
[4]   QT variability [J].
Berger, RD .
JOURNAL OF ELECTROCARDIOLOGY, 2003, 36 :83-87
[5]   Targeting mitochondrial cardiolipin and the cytochrome c/cardiolipin complex to promote electron transport and optimize mitochondrial ATP synthesis [J].
Birk, A. V. ;
Chao, W. M. ;
Bracken, C. ;
Warren, J. D. ;
Szeto, H. H. .
BRITISH JOURNAL OF PHARMACOLOGY, 2014, 171 (08) :2017-2028
[6]   The Mitochondrial-Targeted Compound SS-31 Re-Energizes Ischemic Mitochondria by Interacting with Cardiolipin [J].
Birk, Alexander V. ;
Liu, Shaoyi ;
Soong, Yi ;
Mills, William ;
Singh, Pradeep ;
Warren, J. David ;
Seshan, Surya V. ;
Pardee, Joel D. ;
Szeto, Hazel H. .
JOURNAL OF THE AMERICAN SOCIETY OF NEPHROLOGY, 2013, 24 (08) :1250-1261
[7]   Targeted inhibition of p38 MAPK promotes hypertrophic cardiomyopathy through upregulation of calcineurin-NEAT signaling [J].
Braz, JC ;
Bueno, OF ;
Liang, QR ;
Wilkins, BJ ;
Dai, YS ;
Parsons, S ;
Braunwart, J ;
Glascock, BJ ;
Klevitsky, R ;
Kimball, TF ;
Hewett, TE ;
Molkentin, JD .
JOURNAL OF CLINICAL INVESTIGATION, 2003, 111 (10) :1475-1486
[8]   Reduction of Early Reperfusion Injury With the Mitochondria-Targeting Peptide Bendavia [J].
Brown, David A. ;
Hale, Sharon L. ;
Baines, Christopher P. ;
del Rio, Carlos L. ;
Hamlin, Robert L. ;
Yueyama, Yukie ;
Kijtawornrat, Anusak ;
Yeh, Steve T. ;
Frasier, Chad R. ;
Stewart, Luke M. ;
Moukdar, Fatiha ;
Shaikh, Saame Raza ;
Fisher-Wellman, Kelsey H. ;
Neufer, P. Darrell ;
Kloner, Robert A. .
JOURNAL OF CARDIOVASCULAR PHARMACOLOGY AND THERAPEUTICS, 2014, 19 (01) :121-132
[9]   The MEK1-ERK1/2 signaling pathway promotes compensated cardiac hypertrophy in transgenic mice [J].
Bueno, OF ;
De Windt, LJ ;
Tymitz, KM ;
Witt, SA ;
Kimball, TR ;
Klevitsky, R ;
Hewett, TE ;
Jones, SP ;
Lefer, DJ ;
Peng, CF ;
Kitsis, RN ;
Molkentin, JD .
EMBO JOURNAL, 2000, 19 (23) :6341-6350
[10]   NADPH oxidases in cardiovascular health and disease [J].
Cave, Alison C. ;
Brewer, Alison C. ;
Narayanapanicker, Anilkumar ;
Ray, Robin ;
Grieve, David J. ;
Walker, Simon ;
Shah, Ajay M. .
ANTIOXIDANTS & REDOX SIGNALING, 2006, 8 (5-6) :691-728