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首页> 外文期刊>Nucleic Acids Research >DISTINCT ROLES OF E2F RECOGNITION SITES AS POSITIVE OR NEGATIVE ELEMENTS IN REGULATION OF THE DNA POLYMERASE ALPHA 180 KDA CATALYTIC SUBUNIT GENE PROMOTER DURING DROSOPHILA DEVELOPMENT
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DISTINCT ROLES OF E2F RECOGNITION SITES AS POSITIVE OR NEGATIVE ELEMENTS IN REGULATION OF THE DNA POLYMERASE ALPHA 180 KDA CATALYTIC SUBUNIT GENE PROMOTER DURING DROSOPHILA DEVELOPMENT

机译:E2F识别位点作为正或负元素在果蝇发育过程中调控DNA聚合酶α180 KDA催化亚单位基因启动子的不同作用

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摘要

The transcription factor E2F plays a key role in transcriptional control during the growth cycle of higher eukaryotic cells, The promoter region of the Drosophila DNA polymerase alpha 180 kDa catalytic subunit gene contains three E2F recognition sequences located at positions -353 to -342 (E2F site 1), -21 to -14 (E2F site 2) and -12 to -5 (E2F site 3) with respect to the transcription initiation site. Various base substitutions were generated in each or all of the three E2F sites in vitro to allow examination of their effects on E2F binding and promoter function in cultured Kc cells as well as in living flies. Glutathione S-transferase (GST)-E2F and GST-DP fusion proteins were found to cooperate in binding to the three E2F sites in the DNA polymerase alpha gene promoter in vitro, In contrast, an E2F-specific activity detected in nuclear extracts of Kc cells showed little affinity for E2F site 1 but strong binding to sites 2 and 3, Transient expression of Drosophila E2F in Kc cells activated the DNA polymerase cc gene promoter and the target sites for activation coincided with E2F sites 2 and 3. However, analyses with transgenic flies indicate that E2F site 3 functions positively in terms of DNA polymerase alpha gene promoter activity, while E2F sites 1 and 2 rather have a negative control function, Thus E2F sites play distinct roles as positive or negative elements in regulation of the DNA polymerase alpha gene promoter during Drosophila development.
机译:转录因子E2F在高等真核细胞生长周期中的转录控制中起着关键作用。果蝇DNA聚合酶α180 kDa催化亚基基因的启动子区域包含位于-353至-342(E2F位点)的三个E2F识别序列1),转录起始位点为-21至-14(E2F位点2)和-12至-5(E2F位点3)。在体外三个E2F位点的每一个或全部中产生了各种碱基取代,以检查它们对培养的Kc细胞以及活蝇中E2F结合和启动子功能的影响。发现谷胱甘肽S-转移酶(GST)-E2F和GST-DP融合蛋白在体外与DNA聚合酶α基因启动子中的三个E2F位点结合,相反,在Kc核提取物中检测到E2F特异性活性细胞对E2F位点1的亲和力很小,但与位点2和3的结合力强。果蝇E2F在Kc细胞中的瞬时表达激活了DNA聚合酶cc基因启动子,而激活的目标位点与E2F位点2和3一致。转基因果蝇表明,E2F位点3在DNA聚合酶α基因启动子活性方面具有正功能,而E2F位点1和2则具有负控制功能,因此E2F位点在调节DNA聚合酶α中起正或负元素的作用果蝇发育过程中的基因启动子。

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