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Transcriptional regulation mechanisms of hypoxia-induced neuroglobinTI Transcriptional regulation mechanisms of hypoxia-induced neuroglobin gene expression

机译:缺氧诱导神经球蛋白基因的转录调控机制缺氧诱导神经球蛋白基因表达的转录调控机制

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Ngb (neuroglobin) has been identified as a novel endogenous neuroprotectant. However, little is known about the regulatory mechanisms of Ngb expression, especially under conditions of hypoxia. In the present study, we located the core proximal promoter of the mouse Ngb gene to a 554 bp segment, which harbours putative conserved NF-kappa B (nuclear factor kappa B)- and Egr (early growth-response factor 1) -binding sites. Overexpression and knockdown of transcription factors p65, p50, Egr1 or Sp1 (specificity protein 1) increased and decreased Ngb expression respectively. Experimental assessments with transfections of mutational Ngb gene promoter constructs, as well as EMSA (electrophoretic mobility-shift assay) and ChIP (chromatin immunoprecipitation) assays, demonstrated that NF-kappa B family members (p65, p50 and cite!), Egr1 and Sp1 bound in vitro and in vivo to the proximal promoter region of the Ngb gene. Moreover, a kappa B3 site was found as a pivotal cis-element responsible for hypoxia-induced Ngb promoter activity. NF-kappa B (p65) and Sp1 were also responsible for hypoxia-induced up-regulation of Ngb expression. Although there are no conserved HREs (hypoxia-response elements) in the promoter of the mouse Ngb gene, the results of the present study suggest that HIF-1 alpha (hypoxia-inducible factor-1 alpha) is also involved in hypoxia-induced Ngb up-regulation. In conclusion, we have identified that NF-kappa B, Egr1 and Sp1 played important roles in the regulation of basal Ngb expression via specific interactions with the mouse Ngb promoter. NF-kappa B, Sp1 and HIF-1 alpha contributed to the up-regulation of mouse Ngb gene expression under hypoxic conditions.
机译:Ngb(神经球蛋白)已被鉴定为新型内源性神经保护剂。但是,关于Ngb表达的调节机制知之甚少,尤其是在缺氧条件下。在本研究中,我们将小鼠Ngb基因的核心近端启动子定位在554 bp的片段上,该片段具有推定的保守NF-κB(核因子κB)和Egr(早期生长反应因子1)结合位点。 。转录因子p65,p50,Egr1或Sp1(特异性蛋白1)的过表达和敲低分别增加和减少Ngb表达。用突变Ngb基因启动子构建体转染进行的实验评估以及EMSA(电泳迁移率迁移测定)和ChIP(染色质免疫沉淀)测定表明,NF-κB家族成员(p65,p50和cite!),Egr1和Sp1!在体外和体内与Ngb基因的近端启动子区域结合。此外,发现一个κB3位点是一个关键的顺式元件,负责缺氧诱导的Ngb启动子活性。 NF-κB(p65)和Sp1也负责缺氧诱导的Ngb表达上调。尽管在小鼠Ngb基因的启动子中没有保守的HRE(低氧反应元件),但本研究的结果表明,HIF-1 alpha(低氧诱导因子-1α)也参与了低氧诱导的Ngb上调。总之,我们已经确定,NF-κB,Egr1和Sp1通过与小鼠Ngb启动子的特异性相互作用在基础Ngb表达的调节中起重要作用。在缺氧条件下,NF-κB,Sp1和HIF-1 alpha促进了小鼠Ngb基因表达的上调。

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