NADPH oxidase 4 promotes cardiac microvascular angiogenesis after hypoxia/reoxygenation in vitro

被引:46
作者
Wang, Jinyi [1 ]
Hong, Zhibo [1 ]
Zeng, Chao [1 ]
Yu, Qiujun [1 ]
Wang, Haichang [1 ]
机构
[1] Fourth Mil Med Univ, Dept Cardiol, Xijing Hosp, Xian 710032, Shaanxi, Peoples R China
基金
中国国家自然科学基金;
关键词
NADPH oxidase 4; Ischemia/reperfusion; Cardiac microvascular endothelial cells; Angiogenesis; Reactive oxygen species; Free radicals; HYPOXIA-INDUCIBLE FACTOR; ENDOTHELIAL-CELLS; NAD(P)H OXIDASE; CARDIOVASCULAR-DISEASE; SUBUNIT NOX4; ACTIVATION; APOPTOSIS; ISCHEMIA; INJURY; PATHOPHYSIOLOGY;
D O I
10.1016/j.freeradbiomed.2014.01.027
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
Microvascular endothelial cell dysfunction plays a key role in myocardial ischemia/reperfusion (I/R) injury, wherein reactive oxygen species (ROS)-dependent signaling is intensively involved. However, the roles of the various ROS sources remain unclear. This study sought to investigate the role of NADPH oxidase 4 (Nox4) in the cardiac microvascular endothelium in response to I/R injury. Adult rat cardiac microvascular endothelial cells (CMECs) were isolated and subjected to hypoxia/reoxygenation (H/R). Our results showed that Nox4 was highly expressed in CMECs, was significantly increased at both mRNA and protein levels after H/R injury, and contributed to H/R-stimulated increase in Nox activity and ROS generation. Downregulation of Nox4 by small interfering RNA transfection did not affect cell viability or ROS production under normoxia, but exacerbated H/R injury as evidenced by increased apoptosis and inhibited cell survival, migration, and angiogenesis after H/R. Nox4 inhibition also increased prolyl hydroxylase 2 (PHD2) expression and blocked H/R-induced increases in HIF-alpha and VEGF expression. Pretreatment with DMOG, a specific competitive PHD inhibitor, upregulated HIP-Ice and VEGF expression and significantly reversed Nox4 knockdown-induced injury. However, Nox2 was scarcely expressed and played" a minimal role in CMEC survival and angiogenesis after H/R, though a modest upregulation of Nox2 was observed. In conclusion, this study demonstrated a previously unrecognized protective role of Nox4, a ROS-generating enzyme and the major Nox isoform in CMECs, against H/R injury by inhibiting apoptosis and promoting migration and angiogenesis via a PHD2-dependent upregulation of HIF-1/VEGF proangiogenic signaling.(c) 2014 Elsevier Inc All rights reserved.
引用
收藏
页码:278 / 288
页数:11
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