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首页> 外文期刊>Journal of cellular and molecular medicine. >Down‐regulation of GAS5 ameliorates myocardial ischaemia/reperfusion injury via the miR‐335/ROCK1/AKT/GSK‐3β axis
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Down‐regulation of GAS5 ameliorates myocardial ischaemia/reperfusion injury via the miR‐335/ROCK1/AKT/GSK‐3β axis

机译:气体5的下调通过MIR-335 / ROCK1 / AKT / GSK-3β轴改善心肌缺血/再灌注损伤

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摘要

Growth arrest‐specific transcript 5 (GAS5), along non‐coding RNA (LncRNA), is highly expressed in hypoxia/reoxygenation (H/R)‐cardiomyocytes and promotes H/R‐induced apoptosis. In this study, we determined whether down‐regulation of GAS5 ameliorates myocardial ischaemia/reperfusion (I/R) injury and further explored its mechanism. GAS5 expression in cardiomyocytes and rats was knockdown by transfected or injected with GAS5‐specific small interfering RNA or adeno‐associated virus delivering small hairpin RNAs, respectively. The effects of GAS5 knockdown on myocardial I/R injury were detected by CCK‐8, myocardial enzyme test, flow cytometry, TTC and terminal deoxynucleotidyl transferase dUTP nick end labelling (TUNEL) staining. qRT‐PCR and luciferase reporter assay were carried out to analyse the relationship between GAS5 and miR‐335. The regulation of GAS5 on Rho‐associated protein kinase 1 (ROCK1) expression, the activation of PI3K/AKT/GSK‐3β pathway and mitochondrial permeability transition pore (mPTP) opening was further evaluated. The results indicated that GAS5 knockdown enhanced the viability, decreased apoptosis and reduced the levels of lactate dehydrogenase and creatine kinase‐MB in H/R‐treatment cardiomyocytes. Meanwhile, down‐regulation of GAS5 limited myocardial infarct size and reduced apoptosis in I/R‐heart. GAS5 was found to bind to miR‐335 and displayed a reciprocal inhibition between them. Furthermore, GAS5 knockdown repressed ROCK1 expression, activated PI3K/AKT, thereby leading to inhibition of GSK‐3β and mPTP opening. These suppressions were abrogated by miR‐335 inhibitor treatment. Taken together, our results demonstrated that down‐regulation of GAS5 ameliorates myocardial I/R injury via the miR‐335/ROCK1/AKT/GSK‐3β axis. Our findings suggested that GAS5 may be a new therapeutic target for the prevention of myocardial I/R injury.
机译:沿着非编码RNA(LNCRNA)的生长抑制特异性转录物5(GAS5)在缺氧/释放(H / R)-Cardiomy细胞中高度表达,并促进H / R诱导的细胞凋亡。在这项研究中,我们确定了气体5的抑制性是否改善了心肌缺血/再灌注(I / R)损伤,并进一步探索了其机制。通过分别转染或注射了Carchiomyocytes和大鼠的Gas5表达,分别通过分别转染或注射GAS5特异性小干扰RNA或腺相关病毒,从而递送小发夹RNA。通过CCK-8,心肌酶试验,流式细胞术,流动细胞仪,TTC和末端脱辛核苷酸转移酶DUTP缺口末端标记(TUNEL)染色来检测气体5敲低对心肌I / R损伤的影响。进行QRT-PCR和荧​​光素酶报告分析以分析气体5和miR-335之间的关系。进一步评估了对RHO相关蛋白激酶1(ROCK1)表达的气体5的调节,进一步评价了PI3K / AKT / GSK-3β途径和线粒体渗透性转变孔(MPTP)开度的激活。结果表明,Gas5敲低增强了活力,降低了凋亡,降低了H / R治疗心肌细胞中的乳酸脱氢酶和肌酸激酶-MB的水平。同时,对气体5的缩小调节有限的心肌梗塞大小并降低I / R心中的细胞凋亡。发现Gas5与miR-335结合并在它们之间显示互核抑制。此外,Gas5敲除压抑Rock1表达,活化PI3K / AKT,从而导致GSK-3β和MPTP开口的抑制。这些抑制废除MiR-335抑制剂治疗。在一起,我们的结果表明,Gas5的下调通过MiR-335 / Rock1 / Akt / GSK-3β轴改善心肌I / R损伤。我们的研究结果表明,GAS5可能是预防心肌I / R损伤的新治疗靶标。

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