Mdivi-1, a mitochondrial fission inhibitor, reduces angiotensin-II- induced hypertension by mediating VSMC phenotypic switch

被引:56
作者
Deng, Yue [1 ]
Li, Shuangyue [1 ]
Chen, Zhenzhen [1 ]
Wang, Wenjie [1 ]
Geng, Bin [1 ]
Cai, Jun [1 ]
机构
[1] Chinese Acad Med Sci & Peking Union Med Coll, Natl Ctr Cardiovasc Dis, State Key Lab Cardiovasc Dis, Hypertens Ctr Fuwai Hosp, Beijing, Peoples R China
关键词
Mitochondrial fission; Oxidative stress; Angiotensin II; Mdivi-1; VSMC phenotypic switch; Hypertension; S-NITROSYLATION; OXIDATIVE STRESS; STEM-CELLS; DRP1; INJURY;
D O I
10.1016/j.biopha.2021.111689
中图分类号
R-3 [医学研究方法]; R3 [基础医学];
学科分类号
1001 ;
摘要
Vascular smooth muscle cell (VSMC) phenotypic switch plays an essential role in the pathogenesis of hypertension. Mitochondrial dynamics, such as mitochondrial fission, can also contribute to VSMC phenotypic switch. Whether mitochondrial fission act as a novel target for anti-hypertensive drug development remains unknown. In the present study, we confirmed that angiotensin II (AngII) rapidly and continuously induced mitochondrial fission in VSMCs. We also detected the phosphorylation status of dynamin-related protein-1 (Drp1), a key protein involved in mitochondrial fission, at Ser616 site; and observed Drp1 mitochondrial translocation in VSMCs or arteries of AngII-induced hypertensive mice. The Drp1 inhibitor mitochondrial division inhibitor-1 (Mdivi-1) dramatically reversed AngII-induced Drp1 phosphorylation, mitochondrial fission, and reactive oxidative species generation. Treatment with Mdivi-1 (20 mg/kg/every other day) significantly attenuated AngII-induced hypertension (22 mmHg), arterial remodeling, and cardiac hypertrophy, in part by preventing VSMC phenotypic switch. In addition, Mdivi-1 treatment was not associated with liver or renal functional injury. Collectively, these results indicate that Mdivi-1 inhibited mitochondrial fission, recovered mitochondrial activity, and prevented AngII-induced VSMC phenotypic switch, resulting in reduced hypertension.
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页数:12
相关论文
共 46 条
[1]   Vascular Smooth Muscle Cells in Atherosclerosis [J].
Bennett, Martin R. ;
Sinha, Sanjay ;
Owens, Gary K. .
CIRCULATION RESEARCH, 2016, 118 (04) :692-702
[2]   The Putative Drp1 Inhibitor mdivi-1 Is a Reversible Mitochondrial Complex I Inhibitor that Modulates Reactive Oxygen Species [J].
Bordt, Evan A. ;
Clerc, Pascaline ;
Roelofs, Brian A. ;
Saladino, Andrew J. ;
Tretter, Laszlo ;
Adam-Vizi, Vera ;
Cherok, Edward ;
Khalil, Ahmed ;
Yadava, Nagendra ;
Ge, Shealinna X. ;
Francis, T. Chase ;
Kennedy, Nolan W. ;
Picton, Lora K. ;
Kumar, Tanya ;
Uppuluri, Sruti ;
Miller, Alexandrea M. ;
Itoh, Kie ;
Karbowski, Mariusz ;
Sesaki, Hiromi ;
Hill, R. Blake ;
Polster, Brian M. .
DEVELOPMENTAL CELL, 2017, 40 (06) :583-+
[3]   S-Nitrosylation of DRP1 Does Not Affect Enzymatic Activity and is Not Specific to Alzheimer's Disease [J].
Bossy, Blaise ;
Petrilli, Alejandra ;
Klinglmayr, Eva ;
Chen, Jin ;
Luetz-Meindl, Ursula ;
Knott, Andrew B. ;
Masliah, Eliezer ;
Schwarzenbacher, Robert ;
Bossy-Wetzel, Ella .
JOURNAL OF ALZHEIMERS DISEASE, 2010, 20 :S513-S526
[4]   Chemical inhibition of the mitochondrial division dynamin reveals its role in Bax/Bak-dependent mitochondrial outer membrane permeabilization [J].
Cassidy-Stone, Ann ;
Chipuk, Jerry E. ;
Ingerman', Elena ;
Song, Cheng ;
Yoo, Choong ;
Kuwana, Tomomi ;
Kurth, Mark J. ;
Shaw, Jared T. ;
Hinshaw, Jenny E. ;
Green, Douglas R. ;
Nunnari, Jodi .
DEVELOPMENTAL CELL, 2008, 14 (02) :193-204
[5]   Influence of glucose metabolism on vascular smooth muscle cell proliferation [J].
Chiong, Mario ;
Esteban Morales, Pablo ;
Torres, Gloria ;
Gutierrez, Tomas ;
Garcia, Lorena ;
Ibacache, Mauricio ;
Michea, Luis .
VASA-EUROPEAN JOURNAL OF VASCULAR MEDICINE, 2013, 42 (01) :8-16
[6]   S-Nitrosylation of Drp1 Mediates β-Amyloid-Related Mitochondrial Fission and Neuronal Injury [J].
Cho, Dong-Hyung ;
Nakamura, Tomohiro ;
Fang, Jianguo ;
Cieplak, Piotr ;
Godzik, Adam ;
Gu, Zezong ;
Lipton, Stuart A. .
SCIENCE, 2009, 324 (5923) :102-105
[7]   S-nitrosylation of Parkin regulates ubiquitination and compromises Parkin's protective function [J].
Chung, KKK ;
Thomas, B ;
Li, XJ ;
Pletnikova, O ;
Troncoso, JC ;
Marsh, L ;
Dawson, VL ;
Dawson, TM .
SCIENCE, 2004, 304 (5675) :1328-1331
[8]  
Cong Z., 2020, CARDIOVASC RES, V116, P1071
[9]   Tobacco smoking induces cardiovascular mitochondrial oxidative stress, promotes endothelial dysfunction, and enhances hypertension [J].
Dikalov, Sergey ;
Itani, Hana ;
Richmond, Bradley ;
Vergeade, Aurelia ;
Rahman, S. M. Jamshedur ;
Boutaud, Olivier ;
Blackwel, Timothy ;
Massion, Pierre P. ;
Harrison, David G. ;
Dikalova, Anna .
AMERICAN JOURNAL OF PHYSIOLOGY-HEART AND CIRCULATORY PHYSIOLOGY, 2019, 316 (03) :H639-H646
[10]   Angiotensin II-Induced Production of Mitochondrial Reactive Oxygen Species: Potential Mechanisms and Relevance for Cardiovascular Disease [J].
Dikalov, Sergey I. ;
Nazarewicz, Rafal R. .
ANTIOXIDANTS & REDOX SIGNALING, 2013, 19 (10) :1085-1094