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人类c-MYC启动子中生物学相关G-四链体元件的溶液结构。对G-四链体稳定化的影响。

Solution structure of the biologically relevant G-quadruplex element in the human c-MYC promoter. Implications for G-quadruplex stabilization.

作者信息

Ambrus Attila, Chen Ding, Dai Jixun, Jones Roger A, Yang Danzhou

机构信息

College of Pharmacy, The University of Arizona, 1703 East Mabel Street, Tucson, Arizona 85721, USA.

出版信息

Biochemistry. 2005 Feb 15;44(6):2048-58. doi: 10.1021/bi048242p.

Abstract

The nuclease hypersensitivity element III(1) (NHE III(1)) of the c-MYC promoter strongly controls the transcriptional activity of the c-MYC oncogene. The purine-rich strand of the NHE III(1) element has been shown to be a silencer element for c-MYC transcription upon formation of a G-quadruplex structure. We have determined the predominant G-quadruplex structure of this silencer element in potassium solution by NMR. The G-quadruplex structure adopts an intramolecular parallel-stranded quadruplex conformation with three guanine tetrads and three side loops, including two single-nucleotide side loops and one double-nucleotide side loop, that connect the four guanine strands. The three side loops are very stable and well-defined. The 3'-flanking sequence forms a stable fold-back stacking conformation capping the top end of the G-quadruplex structure. The 5'-flanking A and G bases cap the bottom end of the G-quadruplex, with the adenine stacking very well with the bottom tetrad. This paper reports the first solution structure of a G-quadruplex found to form in the promoter region of an oncogene (c-MYC). This G-quadruplex structure is extremely stable, with a similar melting temperature (>85 degrees C) to that of the wild-type 27-mer purine-rich NHE III(1) sequence of the c-MYC promoter. This predominant quadruplex structure has been shown to be biologically relevant, and the structural information revealed in this research provides an important basis for the design of new drug candidates that specifically target the c-MYC G-quadruplex structure and modulate gene expression.

摘要

c-MYC启动子的核酸酶超敏元件III(1)(NHE III(1))强烈控制着c-MYC癌基因的转录活性。NHE III(1)元件富含嘌呤的链在形成G-四链体结构后已被证明是c-MYC转录的沉默元件。我们通过核磁共振确定了该沉默元件在钾溶液中的主要G-四链体结构。该G-四链体结构采用分子内平行链四链体构象,有三个鸟嘌呤四联体和三个侧环,包括两个单核苷酸侧环和一个双核苷酸侧环,连接四条鸟嘌呤链。这三个侧环非常稳定且界限清晰。3'侧翼序列形成一个稳定的回折堆积构象,覆盖G-四链体结构的顶端。5'侧翼的A和G碱基覆盖G-四链体的底端,腺嘌呤与底部四联体堆积良好。本文报道了在癌基因(c-MYC)启动子区域发现的第一个形成G-四链体的溶液结构。这种G-四链体结构极其稳定,其解链温度(>85摄氏度)与c-MYC启动子野生型27聚体富含嘌呤的NHE III(1)序列相似。这种主要的四链体结构已被证明具有生物学相关性,本研究揭示的结构信息为设计特异性靶向c-MYC G-四链体结构并调节基因表达的新型候选药物提供了重要依据。

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