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首页> 外文期刊>Nucleic acids research >c-MYC promoter G-quadruplex formed at the 5′-end of NHE III1 element: insights into biological relevance and parallel-stranded G-quadruplex stability
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c-MYC promoter G-quadruplex formed at the 5′-end of NHE III1 element: insights into biological relevance and parallel-stranded G-quadruplex stability

机译:c-MYC启动子G-四链体形成于NHE III1元件的5'末端:对生物学相关性和平行链G-四链体稳定性的见解

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We studied the structures and stabilities of G-quadruplexes formed in Myc1234, the region containing the four consecutive 5′ runs of guanines of c-MYC promoter NHE III1, which have recently been shown to form in a supercoiled plasmid system in aqueous solution. We determined the NMR solution structure of the 1:2:1 parallel-stranded loop isomer, one of the two major loop isomers formed in Myc1234 in K+ solution. This major loop isomer, although sharing the same folding structure, appears to be markedly less stable than the major loop isomer formed in the single-stranded c-MYC NHE III1 oligonucleotide, the Myc2345 G-quadruplex. Our NMR structures indicated that the different thermostabilities of the two 1:2:1 parallel c-MYC G-quadruplexes are likely caused by the different base conformations of the single nucleotide loops. The observation of the formation of the Myc1234 G-quadruplex in the supercoiled plasmid thus points to the potential role of supercoiling in the G-quadruplex formation in promoter sequences. We also performed a systematic thermodynamic analysis of modified c-MYC NHE III1 sequences, which provided quantitative measure of the contributions of various loop sequences to the thermostabilities of parallel-stranded G-quadruplexes. This information is important for understanding the equilibrium of promoter G-quadruplex loop isomers and for their drug targeting.
机译:我们研究了在Myc1234中形成的G-四链体的结构和稳定性,该区域包含c-MYC启动子NHE III 1 的四个连续的5'鸟嘌呤序列,最近被证明是在水溶液中的超螺旋质粒系统。我们确定了1:2:1平行链环状异构体的NMR溶液结构,该异构体是Myc1234在K + 溶液中形成的两个主要环状异构体之一。尽管具有相同的折叠结构,但该主环异构体似乎比单链c-MYC NHE III 1 寡核苷酸Myc2345 G-quadruplex中形成的主环异构体明显不稳定。我们的NMR结构表明,两个1:2:1平行的c-MYC G-四链体的不同热稳定性可能是由单个核苷酸环的不同碱基构象引起的。因此,在超螺旋质粒中观察到Myc1234 G-四链体形成的过程指出了超螺旋在启动子序列中在G-四链体形成中的潜在作用。我们还对修饰的c-​​MYC NHE III 1 序列进行了系统的热力学分析,从而定量测量了各种环序列对平行链G四链体的热稳定性的贡献。该信息对于理解启动子G-四链环异构体的平衡及其药物靶向非常重要。

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