Department of Cardiovascular Surgery, Xijing Hospital, The Air Force Medical University, 127 Changle West Road, Xi'an 710032, China; Department of Aerospace Physiology, The Air Force Medical University, 169 Changle West Road, Xi'an 710032, China.
Key Laboratory of Resource Biology and Biotechnology in Western China, Ministry of Education, Faculty of Life Sciences, Northwest University, 229 Taibai North Road, Xi'an 710069, China.
Biochim Biophys Acta Mol Basis Dis. 2022 Dec 1;1868(12):166535. doi: 10.1016/j.bbadis.2022.166535. Epub 2022 Sep 1.
Claudin-5 has recently attracted increasing attention by its potential as a novel treatment target in the early stage of heart failure. However, whether Claudin-5 produces beneficial effects on myocardial ischemia and reperfusion (IR) injury has not been elucidated yet. In this study, we identified reduced levels of Claudin-5 in the hearts of mice subjected to acute myocardial IR injury and murine HL-1 cardiomyocytes subjected to hypoxia and reoxygenation (HR). We then constructed cardiac-specific Cldn5-overexpressing mice using an adeno-associated virus (AAV9) vector and demonstrated that Cldn5 overexpression ameliorated cardiac dysfunction and myocardial damage in mice subjected to myocardial IR injury. Moreover, Cldn5 overexpression attenuated myocardial oxidative stress (DHE and protein levels of Nrf2, HO-1, and NQO1), inflammatory response (levels of MPO, F4/80, Ly6C, and circulating inflammatory cells), mitochondrial dysfunction (protein levels of PGC-1α, NRF1, and TFAM), endoplasmic reticulum stress (protein levels of GRP78, ATF6, and CHOP and p-PERK), energy metabolism disorder (p-AMPK and ACC), and apoptosis (TUNEL assay and protein levels of Bax and Bcl2) in mice subjected to myocardial IR. Next, we generated Cldn5 knockdown cells by lentiviral shRNA and observed that Cldn5 knockdown inhibited cell viability and affected the expression or activation of these IR-related signalings in HL-1 cardiomyocytes subjected to HR. Mechanistically, SIRT1 was proved to be involved in regulating the expression of Claudin-5 by co-immunoprecipitation analysis and Sirt1 knockdown experiments. Our data demonstrated that targeting Claudin-5 may represent a promising approach for preventing and treating acute myocardial IR injury.
紧密连接蛋白 5 作为心力衰竭早期治疗靶点的潜力引起了人们的广泛关注。然而,紧密连接蛋白 5 是否对心肌缺血再灌注(IR)损伤产生有益影响仍未阐明。在这项研究中,我们发现急性心肌 IR 损伤小鼠和缺氧/复氧(HR)处理的 HL-1 心肌细胞中的 Claudin-5 水平降低。然后,我们使用腺相关病毒(AAV9)载体构建了心脏特异性 Claudin-5 过表达小鼠,并证实 Claudin-5 过表达可改善心肌 IR 损伤小鼠的心脏功能障碍和心肌损伤。此外,Claudin-5 过表达可减轻心肌氧化应激(DHE 和 Nrf2、HO-1、NQO1 蛋白水平)、炎症反应(MPO、F4/80、Ly6C 和循环炎症细胞水平)、线粒体功能障碍(PGC-1α、NRF1 和 TFAM 蛋白水平)、内质网应激(GRP78、ATF6 和 CHOP 和 p-PERK 蛋白水平)、能量代谢障碍(p-AMPK 和 ACC)和凋亡(TUNEL 检测和 Bax 和 Bcl2 蛋白水平)在心肌 IR 损伤小鼠中。接下来,我们通过慢病毒 shRNA 生成 Claudin-5 敲低细胞,并观察到 Claudin-5 敲低抑制了 HL-1 心肌细胞 HR 后的细胞活力,并影响了这些与 IR 相关的信号通路的表达或激活。机制研究表明,通过免疫共沉淀分析和 Sirt1 敲低实验证实 SIRT1 参与调节 Claudin-5 的表达。我们的数据表明,靶向 Claudin-5 可能是预防和治疗急性心肌 IR 损伤的一种有前途的方法。