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首页> 外文期刊>Gene: An International Journal Focusing on Gene Cloning and Gene Structure and Function >Conserved transcription factor binding sites suggest an activator basal promoter and a distal inhibitor in the galanin gene promoter in mouse ES cells
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Conserved transcription factor binding sites suggest an activator basal promoter and a distal inhibitor in the galanin gene promoter in mouse ES cells

机译:保守的转录因子结合位点提示小鼠ES细胞中甘丙肽基因启动子中有一个激活物基础启动子和一个远端抑制剂

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摘要

Galanin and its receptors have been shown to be expressed in undifferentiated mouse embryonic stem (ES) cells through transcriptome and proteomic analyses. Although transcriptional regulation of galanin has been extensively studied, the regulatory proteins that mediate galanin expression in mouse ES cells have not yet been determined. Through sequence alignments, we have found a high degree of similarity between mouse and human galanin upstream sequences at - 146. bp/+. 69. bp (proximal region) and -. 2408. bp/-. 2186. bp (distal region). These regions could be recognized by ES cell nuclear proteins, and EMSA analysis suggests a specific functionality. Analysis of the proximal region (PR) using EMSA and ChIP assays showed that the CREB protein interacts with the galanin promoter both in vitro and in vivo. Additional EMSA analysis revealed that an SP1 consensus site mediated protein-DNA complex formation. Reporter assays showed that CREB is an activator of galanin expression and works cooperatively with SP1. Furthermore, analysis of the distal region (DR) using EMSA assays demonstrated that both HOX-F and PAX 4/6 consensus sites mediated protein-DNA complex formation, and both sites inhibited luciferase activity in reporter assays. These data together suggest that CRE and SP1 act as activators at the basal promoter, while HOX-F and PAX 4/6 act as silencers of transcription. The interplay of these transcription factors (TF) may drive regulated galanin expression in mouse ES cells.
机译:通过转录组和蛋白质组学分析表明,甘丙肽及其受体在未分化的小鼠胚胎干(ES)细胞中表达。尽管已经对甘​​丙肽的转录调节进行了广泛研究,但尚未确定介导小鼠ES细胞中甘丙肽表达的调节蛋白。通过序列比对,我们发现小鼠和人甘丙肽上游序列在-146. bp / +处高度相似。 69. bp(近端区域)和-。 2408bp /-。 2186. bp(远端区域)。这些区域可以被ES细胞核蛋白识别,并且EMSA分析表明具有特定功能。使用EMSA和ChIP分析对近端区域(PR)的分析表明,CREB蛋白在体外和体内均与甘丙肽启动子相互作用。额外的EMSA分析表明,SP1共有位点介导了蛋白质-DNA复合物的形成。记者分析表明,CREB是甘丙肽表达的激活剂,可与SP1协同工作。此外,使用EMSA分析对远端区域(DR)的分析表明,HOX-F和PAX 4/6共有位点均介导了蛋白质-DNA复合物的形成,并且这两个位点均在报告基因分析中抑制了萤光素酶的活性。这些数据共同表明,CRE和SP1充当基础启动子的激活剂,而HOX-F和PAX 4/6充当转录的沉默子。这些转录因子(TF)的相互作用可能会驱动小鼠胚胎干细胞中调节的甘丙肽表达。

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