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首页> 外文期刊>In Vitro Cellular and Developmental Biology. Animal: Journal of the Tissues Culture Association >lncRNA-XIST protects the hypoxia-induced cardiomyocyte injury through regulating the miR-125b-hexokianse 2 axis
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lncRNA-XIST protects the hypoxia-induced cardiomyocyte injury through regulating the miR-125b-hexokianse 2 axis

机译:LNCRNA-XIST通过调节miR-125b-hexokianse 2轴来保护缺氧诱导的心肌细胞损伤

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摘要

Ischemic injury in the heart is associated with low oxygen, leading to the damage of cardiomyocytes. The lncRNA-XIST is known to involve in post-ischemia myocardial remodeling. However, the roles and mechanism of XIST in the hypoxia-induced cardiomyocyte are still under investigation. Moreover, studies that elucidated the impaired glucose metabolism present new hallmark of ischemic cardiovascular injury. The objective of this study is to investigate the effects of lncRNA-XIST on cardiomyocyte injury under hypoxia. Here, we demonstrate that the XIST expressions of cardiomyocyte line, H9c2 were apparently suppressed by long-time hypoxia exposure under low glucose supply. On the contrary, miRNA-125b showed reverse expression pattern to XIST. We identified that XIST functioned as a ceRNA of miR-125b to downregulate its expression in both cell line and rat primary cardiomyocyte. Under low glucose supply, H9c2 cells exhibited increased susceptibility to hypoxia. We observed overexpression of XIST significantly elevated glycose metabolism rate under hypoxia, but overexpression of miR-125b inhibited glycose metabolism rate of cardiomyocyte under hypoxia. The glycolysis enzyme, hexokinase 2 (HK2) was validated as a direct target of miR-125b, which binds to the 3 '-UTR region of HK2 mRNA in cardiomyocytes. Moreover, inhibition of miR-125b significantly protected the hypoxia-induced cardiomyocyte injury through restoration of glucose metabolism. Finally, we demonstrated that transfection of miR-125b in lncRNA-XIST overexpressed H9c2 cells effectively abolished the XIST-activated glucose metabolism and cardiomyocyte protection under hypoxia. The present study illustrates roles of the XIST-miR-125b-HK2 axis in the hypoxia-induced cardiomyocyte injury and proposes that maintaining glucose metabolism might be an effective approach for protection of cardiomyocyte injury.
机译:心脏缺血性损伤与低氧有关,导致心肌细胞的损伤。已知LNCRNA-Xist涉及缺血后心肌重塑。然而,缺氧诱导的心肌细胞中XIS的作用和机制仍在进行调查。此外,阐明葡萄糖代谢受损的研究表明了缺血性心血管损伤的新标志。本研究的目的是探讨Lncra-xist对缺氧下心肌细胞损伤的影响。在这里,我们证明了在低葡萄糖供应下的长时间缺氧暴露显然抑制了心肌细胞系的XIST细胞系H9C2。相反,MiRNA-125B向XIST显示了反向表达模式。我们认为XIST作为miR-125b的Cerna,以使其在细胞系和大鼠原发性心肌细胞中下调其表达。在低血糖供应下,H9C2细胞表现出对缺氧的易感性增加。我们观察到XIST的过度表达在缺氧下的糖糖代谢率明显升高,但MIR-125B的过度表达抑制了缺氧下心肌细胞的糖糖代谢率。糖酵解酶,六酮酶2(HK2)被验证为miR-125b的直接靶标,其与心肌细胞中HK2 mRNA的3'-futR区结合。此外,抑制miR-125b通过恢复葡萄糖代谢而显着保护缺氧诱导的心肌细胞损伤。最后,我们证明了LNCRNA-XIST过表达H9C2细胞中MIR-125B的转染有效地废除了缺氧下的XIST-活化的葡萄糖代谢和心肌细胞保护。本研究说明了XIST-MIR-125B-HK2轴在缺氧诱导的心肌细胞损伤中的作用,并提出维持葡萄糖代谢可能是保护心肌细胞损伤的有效方法。

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