Identification of G-quadruplex structures that possess transcriptional regulating functions in the Dele and Cdc6 CpG islands

IF 2.946 Q3 Biochemistry, Genetics and Molecular Biology BMC Molecular Biology Pub Date : 2017-06-27 DOI:10.1186/s12867-017-0094-z
Daniyah H. Bay, Annika Busch, Fred Lisdat, Keisuke Iida, Kazunori Ikebukuro, Kazuo Nagasawa, Isao Karube, Wataru Yoshida
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引用次数: 11

Abstract

G-quadruplex is a DNA secondary structure that has been shown to play an important role in biological systems. In a previous study, we identified 1998 G-quadruplex-forming sequences using a mouse CpG islands DNA microarray with a fluorescent-labeled G-quadruplex ligand. Among these putative G-quadruplex-forming sequences, G-quadruplex formation was verified for 10 randomly selected sequences by CD spectroscopy and DMS footprinting analysis. In this study, the biological function of the 10 G-quadruplex-forming sequences in the transcriptional regulation has been analyzed using a reporter assay.

When G-quadruplex-forming sequences from the Dele and Cdc6 genes have been cloned in reporter vectors carrying a minimal promoter and the luciferase gene, luciferase expression is activated. This has also been detected in experiments applying a promoterless reporter vector. Mutational analysis reveals that guanine bases, which form the G-tetrads, are important in the activation. In addition, the activation has been found to decrease by the telomestatin derivative L1H1-7OTD which can bind to the G-quadruplex DNA. When Dele and Cdc6 CpG islands, containing the G-quadruplex-forming sequence, have been cloned in the promoterless reporter vector, the luciferase expression is activated. Mutational analysis reveals that the expression level is decreased by mutation on Dele G-quadruplex; however, increased by mutation on Cdc6 G-quadruplex.

Dele and Cdc6 G-quadruplex formation is significant in the transcriptional regulation. Dele and Cdc6 G-quadruplex DNA alone possess enhancer and promotor function. When studied in more complex CpG islands Dele G-quadruplex also demonstrates promotor activity, whereas Cdc6 G-quadruplex may possess a dual function of transcriptional regulation.

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在Dele和Cdc6 CpG岛上具有转录调节功能的g -四重结构的鉴定
g -四重体是一种DNA二级结构,已被证明在生物系统中起重要作用。在之前的研究中,我们使用带有荧光标记的g -四重体配体的小鼠CpG岛DNA微阵列鉴定了1998 g -四重体形成序列。在这些假设的g -四重体形成序列中,随机选择10个序列,通过CD光谱和DMS足迹分析验证了g -四重体形成。在本研究中,使用报告基因法分析了10个g -四重体形成序列在转录调控中的生物学功能。当来自Dele和Cdc6基因的g -四倍体形成序列被克隆到携带最小启动子和荧光素酶基因的报告载体上时,荧光素酶的表达被激活。在应用无启动子报告载体的实验中也发现了这一点。突变分析表明,形成g -四分体的鸟嘌呤碱基在激活中起重要作用。此外,发现端粒抑素衍生物L1H1-7OTD可以与g -四重体DNA结合,从而降低其活化。当含有g -四联体形成序列的Dele和Cdc6 CpG岛被克隆到无启动子报告载体中时,荧光素酶的表达被激活。突变分析表明,Dele g -四重体突变导致表达水平降低;然而,Cdc6 g -四重体突变增加。Dele和Cdc6 g -四重体的形成在转录调控中具有重要意义。Dele和Cdc6 g -四重体DNA单独具有增强子和启动子功能。当在更复杂的CpG岛中研究时,Dele g -四plex也显示出启动子活性,而Cdc6 g -四plex可能具有转录调控的双重功能。
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来源期刊
BMC Molecular Biology
BMC Molecular Biology 生物-生化与分子生物学
CiteScore
4.80
自引率
0.00%
发文量
0
审稿时长
>12 weeks
期刊介绍: BMC Molecular Biology is an open access journal publishing original peer-reviewed research articles in all aspects of DNA and RNA in a cellular context, encompassing investigations of chromatin, replication, recombination, mutation, repair, transcription, translation and RNA processing and function.
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