首页> 外文期刊>Journal of cellular biochemistry. >Regulation of dHAND protein expression by all-trans retinoic acid through ET-1/ETAR signaling in H9c2 cells.
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Regulation of dHAND protein expression by all-trans retinoic acid through ET-1/ETAR signaling in H9c2 cells.

机译:在H9c2细胞中,全反式维甲酸通过ET-1 / ETAR信号传导调节dHAND蛋白表达。

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摘要

dHAND is thought to be a cardiac-restricted transcription factor during embryonic development. Vertebrate heart development involves many transcription factors such as Nkx2.5, GATA, and tbx5. All-trans retinoic acid (AtRA), the oxidative metabolite of vitamin A, can regulate the expression of these factors to affect embryonic heart development. However, the action of atRA on the expression of dHAND is rarely reported. To clarify whether atRA regulate the dHAND expression, we exposed cultured H9c2 cells (rat embryonic cardiomyocytes) to atRA and detected the protein expression of dHAND by Western blot analysis. We observed atRA can regulate the dHAND expression in a dose- and time-dependent manner. AtRA also inhibited endothelin-1 (ET-1) expression in a time-dependent manner. Further studies revealed that pretreatment with 10 microM BQ-123, a selective endothelin-1 receptor (ETAR) antagonist, for 2 h can significantly counteract the inhibition of 5 microM atRA treatment for 2 h of dHAND mRNA and proteinexpression. Taken together, these results suggest that atRA regulates dHAND expression by ET-1/ETAR signal transduction pathway in H9c2 cells. The mechanism of ET-1/ETAR signaling in controlling the level of dHAND protein is to reduce the levels of dHAND mRNA. It is possible for atRA to exert its cardiac teratogenesis during vertebrate embryonic development in this way.
机译:dHAND被认为是胚胎发育过程中受心脏限制的转录因子。脊椎动物心脏的发育涉及许多转录因子,例如Nkx2.5,GATA和tbx5。维生素A的氧化代谢产物全反式维甲酸(AtRA)可以调节这些因子的表达,从而影响胚胎心脏的发育。但是,很少报道atRA对dHAND表达的作用。为了阐明atRA是否调节dHAND表达,我们将培养的H9c2细胞(大鼠胚胎心肌细胞)暴露于atRA,并通过Western blot分析检测dHAND的蛋白表达。我们观察到atRA可以以剂量和时间依赖性方式调节dHAND表达。 AtRA还以时间依赖性方式抑制内皮素1(ET-1)的表达。进一步的研究表明,用10 microM BQ-123(一种选择性内皮素1受体(ETAR)拮抗剂)预处理2 h可以显着抵消对5 microM atRA治疗2 dHAND mRNA和蛋白表达的抑制作用。综上所述,这些结果表明atRA通过H9c2细胞中的ET-1 / ETAR信号转导途径调节dHAND表达。 ET-1 / ETAR信号传导控制dHAND蛋白水平的机制是降低dHAND mRNA水平。 atRA可能以这种方式在脊椎动物胚胎发育过程中发挥其心脏致畸作用。

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