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首页> 外文期刊>American Journal of Physiology >Activation of regenerating gene Reg in rat and human hearts in response to acute stress.
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Activation of regenerating gene Reg in rat and human hearts in response to acute stress.

机译:响应急性应激,大鼠和人心脏中再生基因Reg的激活。

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摘要

Recently, the regenerating gene (Reg) has been documented to play an important role in various regenerating tissues, but it is unknown whether the Reg gene could be activated in the heart. The aim of this study was to reveal the transcriptional activation of Reg in the heart in response to heart stress. We first found REG-1 protein expression in human hearts obtained from autopsied patients who died of myocardial infarction. REG protein was immunohistochemically stained in a fine granular pattern in the cytoplasm of cardiomyocytes. To demonstrate the activation profiles of Reg gene expression in the heart, we quantified the levels of Reg-1 mRNA in rat hearts after coronary artery ligation using real-time RT-PCR. Transient Reg-1 mRNA activation, peaking at 12 h after coronary ligation, was observed mainly in the atria, which was sevenfold higher compared with hearts with pressure overload due to aortic constriction. In contrast, Reg receptor mRNA was expressed intensely in damaged ventricles. Furthermore, Western blot analysis showed the corresponding pattern of Reg protein secretion into the serum after loading, and circulating levels of the protein after myocardial infarction were higher than those after aortic constriction. In conclusion, our results demonstrate for the first time the presence of the Reg/Reg receptor system in damaged hearts. In view of emerging evidence of Reg for tissue regeneration in a variety of tissues/organs, it is proposed that the damaged heart may be a target for Reg action and that Reg may protect against acute heart stress.
机译:近年来,再生基因(Reg)已被证明在各种再生组织中起着重要的作用,但是尚不清楚Reg基因是否可以在心脏中被激活。这项研究的目的是揭示心脏响应心脏压力时Reg的转录激活。我们首先发现了从死于心肌梗死的尸检患者的心脏中的REG-1蛋白表达。 REG蛋白在心肌细胞的细胞质中以细颗粒状进行了免疫组织化学染色。为了证明Reg基因表达在心脏中的激活情况,我们使用实时RT-PCR定量了冠状动脉结扎后大鼠心脏中Reg-1 mRNA的水平。瞬时Reg-1 mRNA激活在冠状动脉结扎后12小时达到峰值,主要在心房中观察到,这比由于主动脉缩窄而导致压力超负荷的心脏高七倍。相反,Reg受体mRNA在受损的心室中强烈表达。此外,蛋白质印迹分析显示,上样后Reg蛋白分泌到血清中的相应模式,心肌梗死后该蛋白的循环水平高于主动脉缩窄后的循环水平。总之,我们的结果首次证明了受损心脏中Reg / Reg受体系统的存在。鉴于新出现的Reg可以在多种组织/器官中进行组织再生的证据,建议将受损的心脏作为Reg的作用靶标,并且Reg可以预防急性心脏压力。

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