Mitochondrial KATP channel involvement in angiotensin II-induced autophagy in vascular smooth muscle cells

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作者
Kang-Ying Yu
Ya-Ping Wang
Lin-Hui Wang
Yang Jian
Xiao-Dong Zhao
Jing-Wei Chen
Koji Murao
Wei Zhu
Liang Dong
Guo-Qing Wang
Guo-Xing Zhang
机构
[1] Medical College of Soochow University,Department of Physiology
[2] Wuxi Second People’s Hospital,Department of Clinical Laboratory
[3] Nanjing University of Chinese Medicine,Department of Internal Medicine, The Affiliated Suzhou Chinese Traditional Medicine Hospital
[4] Kagawa University,Department of Clinical Laboratory, Faculty of Medicine
[5] Soochow University,Department of Internal Medicine, The Second Affiliated Hospital, High
[6] Medical College of Soochow University,tech zone Hospital
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Angiotensin II (Ang II); NADPH oxidase; Mitochondrial ATP-sensitive potassium channels; Autophagy; LC3-II;
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摘要
Autophagy has emerged as a powerful process in the response to cellular injury. The present study was designed to investigate signal transduction pathways in angiotensin II (Ang II)-induced autophagy. Rat vascular smooth muscle cells (VSMCs) were stimulated with different doses of Ang II (10−9–10−5 mol/L) for different time periods (6–72 h). Incubation with Ang II increased the production of reactive oxygen species (ROS), increased the LC3-II to LC3-I ratio, increased beclin-1 expression, and decreased SQSTM1/p62 expression in a dose- and time-dependent manner. In addition, Ang II increased autophagosome formation. Increased ROS production induced by Ang II was inhibited by Ang II type 1 receptor (AT1) blockers (Olmesartan and Candesartan, ARB), a NADPH Oxidase inhibitor (apocynin), and mitochondrial KATP channels inhibitor (5-hydroxydecanoate, 5HD). Ang II (10−7 mol/L, 48 h)-induced increase in the LC3-II to LC3-I ratio, the formation of autophagosomes, expression of beclin-1 and decrease in the expression of SQSTM1/p62 were also inhibited by pretreatment with 3-methyladenine or bafilomycin A1 (inhibitors of autophagy), olmesartan and candesartan (in dose-dependent manners), apocynin, 5HD, and siRNA Atg5. Our results indicate that Ang II increases autophagy levels via activation of AT1 receptor and NADPH oxidase. Mitochondrial KATP channels also play an important role in Ang II-induced autophagy. Our results may provide a new strategy for treatment of cardiovascular diseases with Ang II.
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