School of Basic Medical Sciences and Shanghai Key Laboratory of Molecular Imaging, Shanghai University of Medicine and Health Sciences, Shanghai, 201318, China.
Department of Cardiology, Shanghai University of Medicine and Health Sciences Affiliated Zhoupu Hospital, Shanghai, 201318, China.
Basic Res Cardiol. 2019 Aug 28;114(5):39. doi: 10.1007/s00395-019-0747-9.
Enhanced reactive oxygen species (ROS) at the beginning of reperfusion activated signal transducer and activator of transcription 3 (STAT3) in intermittent hypobaric hypoxia (IHH)-afforded cardioprotection against ischemia/reperfusion (I/R). However, its mechanism remains largely unknown. This study aimed to investigate the role and the downstream of STAT3 in exogenous enhanced post-ischemic ROS-induced cardioprotection using the model of moderate hydrogen peroxide postconditioning (HOPoC) mimicking endogenous ROS in IHH. Moderate HOPoC not only improved the post-ischemic myocardial contractile recovery and reduced the infarct size in isolated rat I/R hearts, but also alleviated mitochondrial calcium overload and ameliorated Ca transients, cell contraction, and mitochondrial membrane potential in rat I/R cardiomyocytes. However, the cardioprotective effects of moderate HOPoC were abrogated by Janus kinase 2 (JAK2)/STAT3 inhibitor AG490 in rat hearts as well as adenovirus-delivered short hairpin RNA specific for STAT3 and the opener of mitochondrial calcium uniporter (MCU) spermine in rat cardiomyocytes. Notably, the moderate HOPoC-afforded cardioprotection abrogated by spermine could be rescued by STAT3 over-expression with adenovirus in rat I/R cardiomyocytes. Besides, moderate HOPoC enhanced mitochondrial STAT3 expression during I/R. A co-localization/interaction of STAT3 or phospho-STAT3 and MCU was observed in rat cardiomyocytes with moderate HOPoC at 5 and 30 min of reperfusion but not in rat I/R cardiomyocytes. Further, STAT3 interacted with the N-terminal domain (NTD) of MCU in rat cardiomyocytes with moderate HOPoC. These findings indicated that post-ischemic moderate ROS activate STAT3 against cardiac I/R by inhibiting MCU opening via its interaction with the NTD of MCU to alleviate mitochondrial calcium overload.
再灌注起始时增强的活性氧(ROS)通过间歇性低氧(IHH)激活信号转导子和转录激活子 3(STAT3),为缺血/再灌注(I/R)提供心肌保护。然而,其机制在很大程度上尚不清楚。本研究旨在使用中度过氧化氢后处理(HOPoC)模型研究 STAT3 在体外增强的缺血后 ROS 诱导的心肌保护中的作用及其下游机制,该模型模拟 IHH 中的内源性 ROS。中度 HOPoC 不仅改善了缺血后心肌的收缩恢复,减少了离体大鼠 I/R 心脏的梗死面积,还减轻了线粒体钙超载,改善了大鼠 I/R 心肌细胞的 Ca 瞬变、细胞收缩和线粒体膜电位。然而,在大鼠心脏中,Janus 激酶 2(JAK2)/STAT3 抑制剂 AG490 和腺病毒递送的 STAT3 短发夹 RNA 以及线粒体钙单向转运体(MCU)开放剂 spermine 均可阻断中度 HOPoC 的心肌保护作用。值得注意的是,在大鼠 I/R 心肌细胞中,用腺病毒过表达 STAT3 可挽救 spermine 阻断的中度 HOPoC 所提供的心肌保护作用。此外,中度 HOPoC 在 I/R 过程中增强了线粒体 STAT3 的表达。在大鼠心肌细胞中,在再灌注 5 分钟和 30 分钟时观察到 STAT3 或磷酸化 STAT3 与 MCU 的共定位/相互作用,但在大鼠 I/R 心肌细胞中没有观察到。进一步研究表明,在大鼠心肌细胞中,中度 HOPoC 可使 STAT3 与 MCU 的 N 端结构域(NTD)相互作用,从而抑制 MCU 的开放,减轻线粒体钙超载。