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miR-133a mediates the hypoxia-induced apoptosis by inhibiting TAGLN2 expression in cardiac myocytes

机译:miR-133a通过抑制心肌细胞中的TAGLN2表达介导缺氧诱导的细胞凋亡

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Myocardial hypoxia is a major cause of cardiac dysfunction due to its triggering cell injury and apoptosis. Deregulated microRNAs and their roles in cardiomyocyte apoptosis have attracted much attention. miR-133a is among the most abundant of the miRNAs present in the normal heart, and significant changes in expression of miR-133a were observed in response to anoxia stress. However, the role of this microRNA in myocardial hypoxia-induced apoptosis is presently unclear. In this study, we identified that miR-133a expression was down-regulated in hypoxic H9c2 cells, and its expression gradually decreased with hypoxia time. Functional analysis revealed that miR-133a attenuated hypoxia-induced apoptosis. We further detected expression of apoptosis-related proteins. The results showed that miR-133a suppressed the expression of apoptotic proteins caspase-8, caspase-9, and caspase-3 significantly, while improved the expression of Bcl-2. Bioinformatics analysis, combined with dual-luciferase reporter analysis, was applied to determine that miR-133a directly was binded to the 3'-untranslated region (3'-UTR) of TAGLN2 mRNA and suppressed expression at both transcriptional and translational levels. Next, TAGLN2 knockout was used to reveal that TAGLN2 modulated hypoxia-induced apoptosis via caspase-8 apoptotic pathway. Taken together, our data demonstrated the roles of miR-133a in hypoxia-induced apoptotic and implicate its potential in cardiac dysfunctions therapy.
机译:心肌缺氧是心脏功能障碍引起的主要原因,因为它引发细胞损伤和细胞凋亡。 Derigutated MicroRNA及其在心肌细胞凋亡中的作用引起了很多关注。 miR-133a是正常心脏中存在的最丰富的miRNA之一,并且响应缺氧胁迫,观察到miR-133a表达的显着变化。然而,这种微小RNA在心肌缺氧诱导的细胞凋亡中的作用目前不清楚。在这项研究中,我们认为miR-133a表达在缺氧H9C2细胞中下调,其表达逐渐降低缺氧时间。功能分析显示,miR-133a减弱缺氧诱导的细胞凋亡。我们进一步检测到凋亡相关蛋白的表达。结果表明,MIR-133A显着抑制了凋亡蛋白Caspase-8,Caspase-9和Caspase-3的表达,同时改善了Bcl-2的表达。将生物信息学分析与双荧光素酶报告者分析相结合,以确定miR-133a直接与tagln2 mRNA的3'-未翻译区域(3'-UTR)结合,并在转录和平移水平下抑制表达。接下来,Tagln2敲除透露Tagln2通过Caspase-8凋亡途径调节缺氧诱导的细胞凋亡。在一起,我们的数据显示MiR-133a在缺氧诱导的凋亡中的作用,并暗示其在心脏功能障碍治疗中的潜力。

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