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C2'位核苷酸修饰对聚(A)RNA的Hoogsteen碱基配对平行链双链体的影响。

Influence of nucleotide modifications at the C2' position on the Hoogsteen base-paired parallel-stranded duplex of poly(A) RNA.

作者信息

Copp William, Denisov Alexey Y, Xie Jingwei, Noronha Anne M, Liczner Christopher, Safaee Nozhat, Wilds Christopher J, Gehring Kalle

机构信息

Department of Chemistry and Biochemistry, Concordia University, Montréal, Québec H4B 1R6, Canada.

Groupe de recherché axé sur la structure des protéines, Montréal, Québec H3G 0B1, Canada.

出版信息

Nucleic Acids Res. 2017 Sep 29;45(17):10321-10331. doi: 10.1093/nar/gkx713.

Abstract

Polyadenylate (poly(A)) has the ability to form a parallel duplex with Hoogsteen adenine:adenine base pairs at low pH or in the presence of ammonium ions. In order to evaluate the potential of this structural motif for nucleic acid-based nanodevices, we characterized the effects on duplex stability of substitutions of the ribose sugar with 2'-deoxyribose, 2'-O-methyl-ribose, 2'-deoxy-2'-fluoro-ribose, arabinose and 2'-deoxy-2'-fluoro-arabinose. Deoxyribose substitutions destabilized the poly(A) duplex both at low pH and in the presence of ammonium ions: no duplex formation could be detected with poly(A) DNA oligomers. Other sugar C2' modifications gave a variety of effects. Arabinose and 2'-deoxy-2'-fluoro-arabinose nucleotides strongly destabilized poly(A) duplex formation. In contrast, 2'-O-methyl and 2'-deoxy-2'-fluoro-ribo modifications were stabilizing either at pH 4 or in the presence of ammonium ions. The differential effect suggests they could be used to design molecules selectively responsive to pH or ammonium ions. To understand the destabilization by deoxyribose, we determined the structures of poly(A) duplexes with a single DNA residue by nuclear magnetic resonance spectroscopy and X-ray crystallography. The structures revealed minor structural perturbations suggesting that the combination of sugar pucker propensity, hydrogen bonding, pKa shifts and changes in hydration determine duplex stability.

摘要

聚腺苷酸(poly(A))在低pH值或存在铵离子的情况下,有能力与Hoogsteen腺嘌呤:腺嘌呤碱基对形成平行双链体。为了评估这种结构基序在基于核酸的纳米器件中的潜力,我们表征了用2'-脱氧核糖、2'-O-甲基核糖、2'-脱氧-2'-氟核糖、阿拉伯糖和2'-脱氧-2'-氟阿拉伯糖取代核糖对双链体稳定性的影响。脱氧核糖取代在低pH值和存在铵离子的情况下都会使poly(A)双链体不稳定:用poly(A) DNA寡聚物无法检测到双链体的形成。其他糖的C2'修饰产生了多种影响。阿拉伯糖和2'-脱氧-2'-氟阿拉伯糖核苷酸强烈地破坏了poly(A)双链体的形成。相比之下,2'-O-甲基和2'-脱氧-2'-氟核糖修饰在pH 4时或存在铵离子的情况下是稳定的。这种差异效应表明它们可用于设计对pH值或铵离子有选择性响应的分子。为了理解脱氧核糖的去稳定作用,我们通过核磁共振光谱和X射线晶体学确定了含有单个DNA残基的poly(A)双链体的结构。这些结构揭示了微小的结构扰动,表明糖的折叠倾向、氢键、pKa位移和水合作用的变化共同决定了双链体的稳定性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bbcb/5737284/85e002046919/gkx713fig1.jpg

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