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Mechanistic studies for the role of cellular nucleic-acid-binding protein (CNBP) in regulation of c-myc transcription

机译:关于细胞核酸结合蛋白(CNBP)在调节c-myc转录中作用的机理研究

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Background Guanine-rich sequence of c-myc nuclease hypersensitive element (NHE) III1 is known to fold in G-quadruplex and subsequently serves as a transcriptional silencer. Cellular nucleic-acid-binding protein (CNBP), a highly conserved zinc-finger protein with multiple biological functions, could bind to c-myc NHE III1 region, specifically to the single strand G-rich sequence. Methods In the present study, a variety of methods, including cloning, expression and purification of protein, EMSA, CD, FRET, Ch-IP, RNA interference, luciferase reporter assay, SPR, co-immunoprecipitation, and co-transfection, were applied to investigate the mechanism for the role of CNBP in regulating c-myc transcription. Results We found that human CNBP specifically bound to the G-rich sequence of c-myc NHE III1 region both in vitro and in cellulo, and subsequently promoted the formation of G-quadruplex. CNBP could induce a transient decrease followed by an increase in c-myc transcription in vivo. The interaction of CNBP with NM23-H2 was responsible for the increase of c-myc transcription. Conclusions Based on above experimental results, a new mechanism, involving G-quadruplex related CNBP/NM23-H2 interaction, for the regulation of c-myc transcription was proposed. General significance These findings indicated that the regulation of c-myc transcription through NHE III1 region might be governed by mechanisms involving complex protein-protein interactions, and suggested a new possibility of CNBP as a potential anti-cancer target based on CNBP's biological function in c-myc transcription.
机译:背景已知富含c-myc核酸酶超敏元件(NHE)III1的鸟嘌呤序列在G-四链体中折叠,随后用作转录沉默子。细胞核酸结合蛋白(CNBP)是一种具有多种生物学功能的高度保守的锌指蛋白,可以与c-myc NHE III1区结合,特别是与单链富含G的序列结合。方法在本研究中,采用了多种方法,包括蛋白质的克隆,表达和纯化,EMSA,CD​​,FRET,Ch-IP,RNA干扰,萤光素酶报告基因测定,SPR,共免疫沉淀和共转染。研究CNBP在调节c-myc转录中的作用机制。结果我们发现,人CNBP在体外和纤维素中都与富含c-myc NHE III1的G序列特异性结合,从而促进了G-四链体的形成。 CNBP可以诱导体内瞬时c-myc转录增加,然后短暂减少。 CNBP与NM23-H2的相互作用是导致c-myc转录增加的原因。结论基于以上实验结果,提出了涉及G-四链体相关CNBP / NM23-H2相互作用的新机制,其调控c-myc转录。一般意义这些发现表明,NHE III1区对c-myc转录的调控可能受涉及复杂蛋白-蛋白相互作用的机制的控制,并表明基于CNBP在c中的生物学功能,CNBP作为潜在抗癌靶标的新可能性。 -myc转录。

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