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外源性10 kDa热休克蛋白在缺氧/复氧后可维持线粒体功能。

Exogenous 10 kDa-Heat Shock Protein Preserves Mitochondrial Function After Hypoxia/Reoxygenation.

作者信息

Maciel Leonardo, de Oliveira Dahienne Ferreira, Monnerat Gustavo, Campos de Carvalho Antonio Carlos, Nascimento Jose Hamilton Matheus

机构信息

Laboratory of Cardiac Electrophysiology Antônio Paes de Carvalho, Institute of Biophysics Carlos Chagas Filho, Federal University of Rio de Janeiro, Rio de Janeiro, Brazil.

National Institute of Cardiology, Rio de Janeiro, Brazil.

出版信息

Front Pharmacol. 2020 May 5;11:545. doi: 10.3389/fphar.2020.00545. eCollection 2020.

Abstract

Humoral factors released during ischemic preconditioning (IPC) protect the myocardium against ischemia/reperfusion (I/R) injury. We have recently identified 10 kDa-heat shock protein (HSP10) and a fraction of small 5-10 kDa peptides (5-10-sP) in the coronary effluent of IPC-treated hearts and demonstrated their cardioprotective potential. We here used our isolated mitochondria model to characterize the impact of exogenous HSP10 and 5-10-sP on mitochondria function from myocardium subjected to I/R injury. Isolated perfused rat hearts were submitted to 30-min global ischemia and 10-min reperfusion. Before ischemia, isolated hearts were infused with saline or 5-10-sP, with or without a mitochondrial ATP-sensitive-K-channel blocker (5HD 10 μmol·L) or PKC inhibitor (chelerythrine 10 μmol·L), before I/R. HSP10 (1 µmol·L) was infused into isolated hearts before I/R without blockers. At 10-min reperfusion, the mitochondria were isolated and mitochondrial function was assessed. In a subset of experiments, freshly isolated mitochondria were directly incubated with HSP10 or 5-10-sP with or without 5HD or chelerythrine before hypoxia/reoxygenation. Infusion of 5-10-sP (n = 5) and HSP10 (n = 5) into isolated hearts before I/R improved mitochondrial ADP-stimulated respiration, ATP production and prevented mitochondrial ROS formation compared to the I/R group (n = 5); this effect was abrogated by 5HD and chelerythrine. In freshly isolated mitochondria with hypoxia/reoxygenation, HSP10 (n = 16) and 5-10-sP (n = 16) incubation prevented reductions of mitochondrial ADP-stimulated respiration (91.5 ± 5.1 nmol O2/min/mg PTN), ATP production (250.1 ± 9.3 μmol ATP/200μg PTN), and prevented mitochondrial ROS production (219.7 ± 9.0 nmol H2O2/200μg PTN) induced by hypoxia/reoxygenation (n = 12, 51.5 ± 5.0 nmol O2/min/mg PTN; 187 ± 21.7 μmol ATP/200 μg PTN; 339.0 ± 14.3 nmol H2O2/200 μg PTN, < 0.001, respectively). 5HD reduced the ADP-stimulated respiration in the HSP10 group (65.84 ± 3.3 nmol O2/min/mg PTN), ATP production (193.7 ± 12.1 μmol ATP/200μg PTN) and increased ROS in the 5-10-sP group (274.4 ± 21.7 nmol H2O2/200 μg PTN). Mitochondria are a target of the cardioprotection induced by 5-10-sP and HSP10. This protection is dependent of PKC and mK activation. HSP10 can act directly on mitochondria and protects against hypoxia/reoxygenation injury by mK activation.

摘要

缺血预处理(IPC)过程中释放的体液因子可保护心肌免受缺血/再灌注(I/R)损伤。我们最近在IPC处理的心脏冠脉流出液中鉴定出10 kDa热休克蛋白(HSP10)和一部分5-10 kDa的小肽(5-10-sP),并证实了它们的心脏保护潜力。我们在此使用分离的线粒体模型来表征外源性HSP10和5-10-sP对遭受I/R损伤的心肌线粒体功能的影响。将离体灌注的大鼠心脏进行30分钟全心缺血和10分钟再灌注。在缺血前,在I/R之前,将离体心脏灌注生理盐水或5-10-sP,同时给予或不给予线粒体ATP敏感性钾通道阻滞剂(5HD 10 μmol·L)或PKC抑制剂(白屈菜红碱10 μmol·L)。在I/R之前,将HSP10(1 µmol·L)灌注到离体心脏中,不使用阻滞剂。在再灌注10分钟时,分离线粒体并评估线粒体功能。在一部分实验中,将新鲜分离的线粒体在缺氧/复氧之前直接与HSP10或5-10-sP一起孵育,同时给予或不给予5HD或白屈菜红碱。与I/R组(n = 5)相比,在I/R之前将5-10-sP(n = 5)和HSP10(n = 5)灌注到离体心脏中可改善线粒体ADP刺激的呼吸、ATP生成并防止线粒体ROS形成;5HD和白屈菜红碱消除了这种作用。在新鲜分离的线粒体进行缺氧/复氧时,HSP10(n = 16)和5-10-sP(n = 16)孵育可防止缺氧/复氧诱导的线粒体ADP刺激的呼吸(91.5 ± 5.1 nmol O2/min/mg PTN)、ATP生成(250.1 ± 9.3 μmol ATP/200μg PTN)的降低,并防止线粒体ROS生成(219.7 ± 9.0 nmol H2O2/200μg PTN)(n = 12,51.5 ± 5.0 nmol O2/min/mg PTN;187 ± 21.7 μmol ATP/200 μg PTN;339.0 ± 14.3 nmol H2O2/200 μg PTN,P < 0.001)。5HD降低了HSP10组的ADP刺激的呼吸(65.84 ± 3.3 nmol O2/min/mg PTN)、ATP生成(193.7 ± 12.1 μmol ATP/200μg PTN),并增加了5-10-sP组的ROS(274.4 ± 21.7 nmol H2O2/200 μg PTN)。线粒体是5-10-sP和HSP10诱导的心脏保护的靶点。这种保护依赖于PKC和mK的激活。HSP10可直接作用于线粒体,并通过激活mK来保护细胞免受缺氧/复氧损伤。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dfe0/7214810/374931a26181/fphar-11-00545-g001.jpg

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