Yin and Yang of NADPH Oxidases in Myocardial Ischemia-Reperfusion

被引:32
作者
Matsushima, Shouji [1 ]
Sadoshima, Junichi [2 ]
机构
[1] Kyushu Univ, Fac Med Sci, Dept Cardiovasc Med, Fukuoka 8128582, Japan
[2] Rutgers New Jersey Med Sch, Cardiovasc Res Inst, Dept Cell Biol & Mol Med, Newark, NJ 07103 USA
关键词
NADPH oxidase; oxidative stress; mitochondria; endoplasmic reticulum; energy metabolism; OXYGEN SPECIES GENERATION; CELL-DEATH; NOX FAMILY; OXIDATIVE STRESS; MITOCHONDRIAL DYSFUNCTION; ANGIOTENSIN-II; UP-REGULATION; INJURY; SUPEROXIDE; ROS;
D O I
10.3390/antiox11061069
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Oxidative stress is critically involved in the pathophysiology of myocardial ischemic-reperfusion (I/R) injury. NADPH oxidase (Nox) 2 and 4, major sources of reactive oxygen species (ROS) in cardiomyocytes, are upregulated in response to I/R. Suppression of Nox-derived ROS prevents mitochondrial dysfunction and endoplasmic reticulum (ER) stress, leading to attenuation of myocardial I/R injury. However, minimal levels of ROS by either Nox2 or Nox4 are required for energy metabolism during I/R in the heart, preserving hypoxia-inducible factor-1 alpha (HIF-1 alpha) and peroxisome proliferator-activated receptor-alpha (PPAR alpha) levels. Furthermore, extreme suppression of Nox activity induces reductive stress, leading to paradoxical increases in ROS levels. Nox4 has distinct roles in organelles such as mitochondria, ER, and ER-mitochondria contact sites (MAMs). Mitochondrial Nox4 exerts a detrimental effect, causing ROS-induced mitochondrial dysfunction during I/R, whereas Nox4 in the ER and MAMs is potentially protective against I/R injury through regulation of autophagy and MAM function, respectively. Although Nox isoforms are potential therapeutic targets for I/R injury, to maximize the effect of intervention, it is likely important to optimize the ROS level and selectively inhibit Nox4 in mitochondria. Here, we discuss the 'Yin and Yang' functions of Nox isoforms during myocardial I/R.
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页数:11
相关论文
共 71 条
[51]   Nox4 Is a Protective Reactive Oxygen Species Generating Vascular NADPH Oxidase [J].
Schroeder, Katrin ;
Zhang, Min ;
Benkhoff, Sebastian ;
Mieth, Anja ;
Pliquett, Rainer ;
Kosowski, Judith ;
Kruse, Christoph ;
Luedike, Peter ;
Michaelis, U. Ruth ;
Weissmann, Norbert ;
Dimmeler, Stefanie ;
Shah, Ajay M. ;
Brandes, Ralf P. .
CIRCULATION RESEARCH, 2012, 110 (09) :1217-+
[52]   Activation of NADPH Oxidase 4 in the Endoplasmic Reticulum Promotes Cardiomyocyte Autophagy and Survival During Energy Stress Through the Protein Kinase RNA-Activated-Like Endoplasmic Reticulum Kinase/Eukaryotic Initiation Factor 2α/Activating Transcription Factor 4 Pathway [J].
Sciarretta, Sebastiano ;
Zhai, Peiyong ;
Shao, Dan ;
Zablocki, Daniela ;
Nagarajan, Narayani ;
Terada, Lance S. ;
Volpe, Massimo ;
Sadoshima, Junichi .
CIRCULATION RESEARCH, 2013, 113 (11) :1253-U183
[53]   NOX4 activity is determined by mRNA levels and reveals a unique pattern of ROS generation [J].
Serrander, Lena ;
Cartier, Laetitia ;
Bedard, Karen ;
Banfi, Botond ;
Lardy, Bernard ;
Plastre, Olivier ;
Sienkiewicz, Andrzej ;
Forro, Laszlo ;
Schlegel, Werner ;
Krause, Karl-Heinz .
BIOCHEMICAL JOURNAL, 2007, 406 (01) :105-114
[54]   Protective effects of metformin against myocardial ischemia-reperfusion injury via AMPK-dependent suppression of NOX4 [J].
Shi, Yan ;
Hou, Shu-Ai .
MOLECULAR MEDICINE REPORTS, 2021, 24 (04)
[55]   Ischemia-reperfusion induces myocardial infarction through mitochondrial Ca2+ overload [J].
Shintani-Ishida, Kaori ;
Inui, Makoto ;
Yoshida, Ken-ichi .
JOURNAL OF MOLECULAR AND CELLULAR CARDIOLOGY, 2012, 53 (02) :233-239
[56]   Netrin-1 abrogates ischemia/reperfusion-induced cardiac mitochondrial dysfunction via nitric oxide-dependent attenuation of NOX4 activation and recoupling of NOS [J].
Siu, Kin Lung ;
Lotz, Christopher ;
Ping, Peipei ;
Cai, Hua .
JOURNAL OF MOLECULAR AND CELLULAR CARDIOLOGY, 2015, 78 :174-185
[57]   Superoxide production and expression of Nox family proteins in human atherosclerosis [J].
Sorescu, D ;
Weiss, D ;
Lassègue, B ;
Clempus, RE ;
Szöcs, K ;
Sorescu, GP ;
Valppu, L ;
Quinn, MT ;
Lambeth, JD ;
Vega, JD ;
Taylor, WR ;
Griendling, KK .
CIRCULATION, 2002, 105 (12) :1429-1435
[58]   The effect of succinate on brain NADH/NAD+ redox state and high energy phosphate metabolism in acute traumatic brain injury [J].
Stovell, Matthew G. ;
Mada, Marius O. ;
Helmy, Adel ;
Carpenter, T. Adrian ;
Thelin, Eric P. ;
Yan, Jiun-Lin ;
Guilfoyle, Mathew R. ;
Jalloh, Ibrahim ;
Howe, Duncan J. ;
Grice, Peter ;
Mason, Andrew ;
Giorgi-Coll, Susan ;
Gallagher, Clare N. ;
Murphy, Michael P. ;
Menon, David K. ;
Hutchinson, Peter J. ;
Carpenter, Keri L. H. .
SCIENTIFIC REPORTS, 2018, 8
[59]   A small molecule inhibitor of Nox2 and Nox4 improves contractile function after ischemia-reperfusion in the mouse heart [J].
Szekeres, Ferenc L. M. ;
Walum, Erik ;
Wikstrom, Per ;
Arner, Anders .
SCIENTIFIC REPORTS, 2021, 11 (01)
[60]   The E-loop Is Involved in Hydrogen Peroxide Formation by the NADPH Oxidase Nox4 [J].
Takac, Ina ;
Schroeder, Katrin ;
Zhang, Leilei ;
Lardy, Bernard ;
Anilkumar, Narayana ;
Lambeth, J. David ;
Shah, Ajay M. ;
Morel, Francoise ;
Brandes, Ralf P. .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2011, 286 (15) :13304-13313