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首页> 外文期刊>Nucleic acids research >A G-quadruplex structure within the 5′-UTR of TRF2 mRNA represses translation in human cells
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A G-quadruplex structure within the 5′-UTR of TRF2 mRNA represses translation in human cells

机译:TRF2 mRNA 5'-UTR内的G四联体结构抑制人类细胞中的翻译

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Telomeres protect chromosome ends from being recognized as double-stranded breaks. Telomeric function is ensured by the shelterin complex in which TRF2 protein is an essential player. The G-rich strand of telomere DNA can fold into G-quadruplex (G4) structure. Small molecules stabilizing G4 structures, named G4 ligands, have been shown to alter telomeric functions in human cells. In this study, we show that a guanine-rich RNA sequence located in the 5′-UTR region of the TRF2 mRNA (hereafter 91TRF2G) is capable of forming a stable quadruplex that causes a 2.8-fold decrease in the translation of a reporter gene in human cells, as compared to a mutant 5′-UTR unable to fold into G4. We also demonstrate that several highly selective G4 ligands, the pyridine dicarboxamide derivative 360A and bisquinolinium compounds Phen-DC(3) and Phen-DC(6), are able to bind the 91TRF2G:RNA sequence and to modulate TRF2 protein translation in vitro. Since the naturally occurring 5′-UTR TRF2:RNA G4 element was used here, which is conserved in several vertebrate orthologs, the present data substantiate a potential translational mechanism mediated by a G4 RNA motif for the downregulation of TRF2 expression.
机译:端粒可防止染色体末端被识别为双链断裂。遮蔽素复合物可确保端粒功能,其中TRF2蛋白是必不可少的。富含G的端粒DNA链可以折叠成G-四链体(G4)结构。稳定G4结构的小分子(称为G4配体)已显示可改变人类细胞中的端粒功能。在这项研究中,我们表明位于TRF2 mRNA的5'-UTR区的富含鸟嘌呤的RNA序列(此后称为91TRF2G)能够形成稳定的四链体,从而使报告基因的翻译减少2.8倍与无法折叠成G4的5'-UTR突变体相比我们还证明了几个高度选择性的G4配体,吡啶二甲酰胺衍生物360A和双喹啉鎓化合物Phen-DC(3)和Phen-DC(6),能够结合91TRF2G:RNA序列并在体外调节TRF2蛋白的翻译。由于此处使用了天然存在的5'-UTR TRF2:RNA G4元件,该元件在几个脊椎动物直系同源物中均得到保守,因此本数据证实了由G4 RNA基序介导的TRF2表达下调的潜在翻译机制。

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