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The transcriptional regulation of regucalcin gene expression

机译:regucalcin基因表达的转录调控

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Regucalcin, which is discovered as a calcium-binding protein in 1978, has been shown to play a multifunctional role in many tissues and cell types; regucalcin has been proposed to play a pivotal role in keeping cell homeostasis and function for cell response. Regucalcin and its gene are identified in over 15 species consisting of regucalcin family. Comparison of the nucleotide sequences of regucalcin from vertebrate species is highly conserved in their coding region with throughout evolution. The regucalcin gene is localized on the chromosome X in rat and human. The organization of rat regucalcin gene consists of seven exons and six introns and several consensus regulatory elements exist upstream of the 5′-flanking region. AP-1, NF1-A1, RGPR-p117, β-catenin, and other factors have been found to be a transcription factor in the enhancement of regucalcin gene promoter activity. The transcription activity of regucalcin gene is enhanced through intracellular signaling factors that are mediated through the phosphorylation and dephosphorylation of nuclear protein in vitro. Regucalcin mRNA and its protein are markedly expressed in the liver and kidney cortex of rats. The expression of regucalcin mRNA in the liver and kidney cortex has been shown to stimulate by hormonal factors (including calcium, calcitonin, parathyroid hormone, insulin, estrogen, and dexamethasone) in vivo. Regucalcin mRNA expression is enhanced in the regenerating liver after partial hepatectomy of rats in vivo. The expression of regucalcin mRNA in the liver and kidney with pathophysiological state has been shown to suppress, suggesting an involvement of regucalcin in disease. Liver regucalcin expression is down-regulated in tumor cells, suggesting a suppressive role in the development of carcinogenesis. Liver regucalcin is markedly released into the serum of rats with chemically induced liver injury in vivo. Serum regucalcin has a potential sensitivity as a specific biochemical marker of chronic liver injury with hepatitis. Regucalcin has been proposed to be a key molecule in cellular regulation and metabolic disease.
机译:Regucalcin于1978年被发现为钙结合蛋白,已被证明在许多组织和细胞类型中起着多功能的作用。已经提出,瑞古钙素在保持细胞稳态和细胞应答功能中起关键作用。在超过15种由regucalcin家族组成的物种中鉴定了regucalcin及其基因。在整个进化过程中,来自脊椎动物物种的regucalcin核苷酸序列的比较在其编码区中高度保守。 regucalcin基因位于大鼠和人类的X染色体上。大鼠regucalcin基因的组织由七个外显子和六个内含子组成,在5'侧翼区域的上游存在几个共有的调控元件。已发现AP-1,NF1-A1,RGPR-p117,β-连环蛋白和其他因子是增强regucalcin基因启动子活性的转录因子。 regucalcin基因的转录活性通过细胞内信号转导因子增强,该信号转导因子通过体外核蛋白的磷酸化和去磷酸化介导。 Regucalcin mRNA及其蛋白在大鼠肝肾皮层中明显表达。体内肝脏和肾脏皮质中调降钙蛋白mRNA的表达已显示受激素因素(包括钙,降钙素,甲状旁腺激素,胰岛素,雌激素和地塞米松)的刺激。大鼠体内部分肝切除后,再生肝中Regucalcin mRNA表达增强。肝脏和肾脏具有病理生理状态时,regucalcin mRNA的表达已被抑制,表明regucalcin与疾病有关。在肿瘤细胞中肝调节型降钙素表达下调,表明在癌发生发展中具有抑制作用。在体内,肝调节血钙蛋白明显释放到患有化学性肝损伤的大鼠的血清中。血清瑞古钙蛋白作为慢性肝炎肝炎的特定生化标志物具有潜在的敏感性。瑞格钙素已被提出是细胞调节和代谢疾病中的关键分子。

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