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首页> 外文期刊>The Biochemical Journal >Cellular nucleic-acid-binding protein, a transcriptional enhancer of c-Myc, promotes the formation of parallel G-quadruplexes
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Cellular nucleic-acid-binding protein, a transcriptional enhancer of c-Myc, promotes the formation of parallel G-quadruplexes

机译:细胞核酸结合蛋白,c-Myc的转录增强子,促进平行G-四链体的形成

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摘要

G-rich sequences that contain stretches of tandem guanines can form four-stranded, intramolecular stable DNA structures called G-quadruplexes (termed G4s). Regulation of the equilibrium between single-stranded and G4 DNA in promoter regions is essential for control of gene expression in the cell. G4s are highly stable structures; however, their folding kinetics are slow under physiological conditions. CNBP (cellular nucleic-acid-binding protein) is a nucleic acid chaperone that binds the G4-forming G-rich sequence located within the NHE (nuclease hypersensitivity element) Ill of the c-Myc proto-oncogene promoter. Several reports have demonstrated that CNBP enhances the transcription of c-Myc in vitro and in vivo; however, none of these reports have assessed the molecular mechanisms responsible for this control. In the present study, by means of Taq polymerase stop assays, electrophoretic mobility-shift assays and CD spectroscopy, we show that CNBP promotes the formation of parallel G4s to the detriment of anti-parallel G4s, and its nucleic acid chaperone activity is required for this effect. These findings are the first to implicate CNBP as a G4-folding modulator and, furthermore, assign CNBP a novel mode-of-action during c-Myc transcriptional regulation.
机译:含有大量串联鸟嘌呤的富含G的序列可形成称为G-四链体(称为G4s)的四链分子内稳定DNA结构。启动子区域中单链和G4 DNA之间平衡的调节对于控制细胞中的基因表达至关重要。 G4是高度稳定的结构;但是,它们的折叠动力学在生理条件下很慢。 CNBP(细胞核酸结合蛋白)是一种核酸伴侣,其结合位于c-Myc原癌基因启动子的NHE(核酸酶超敏元件)III内的形成G4的富G序列。几篇报道表明,CNBP在体外和体内均可增强c-Myc的转录。但是,这些报告都没有评估导致这种控制的分子机制。在本研究中,通过Taq聚合酶终止测定,电泳迁移率变动测定和CD光谱分析,我们显示CNBP促进平行G4的形成,不利于反平行G4的形成,并且其核酸分子伴侣活性对于这种效果。这些发现是第一个将CNBP暗示为G4折叠调节剂的,而且还为CNBP赋予了c-Myc转录调控新的作用方式。

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