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首页> 外文期刊>Nucleic acids research >Hydration of DNA in aqueous solution: NMR evidence for a kinetic destabilization of the minor groove hydration of d-(TTAA)2 versus d-(AATT)2 segments
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Hydration of DNA in aqueous solution: NMR evidence for a kinetic destabilization of the minor groove hydration of d-(TTAA)2 versus d-(AATT)2 segments

机译:水溶液中DNA的水合:NMR证据表明d-(TTAA)2与d-(AATT)2片段的小沟水合动力学失稳

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The residence times of the hydration water molecules near the base protons of d-(GTGGAATTCCAC)2 and d-(GTGGTTAACCAC)2 were investigated by nuclear magnetic resonance (NMR) spectroscopy. Nuclear Overhauser effects (NOE) were observed between base protons of the DNA and hydration water in NOESY and ROESY experiments. Large positive NOESY cross peaks observed between the resonances of the water and the adenine 2H protons of the central d-(AATT)2 segment in the duplex d-(GTGGAATTCCAC)2 indicate the presence of a ‘spine of hydration' with water molecules exhibiting residence times on the DNA longer than 1 nanosecond. In contrast, no positive intermolecular NOESY cross peaks were detected in the d-(TTAA)2 segment of the duplex d-(GTGGTTAACCAC)2, indicating that no water molecules bound with similarly long residence times occur in the minor groove of this fragment. These results can be correlated with the larger width of the minor groove in d-(TTAA)2 segments as compared to that in d-(AATT)2segments, as observed previously in single crystal structures of related oligonucleotide duplexes in B type conformation. The present experiments confirm earlier experimental results from single crystal studies and theoretical predictions that a 5′-dTA-3′ step in the nucleotide sequence interrupts the spine of hydration in the minor groove.
机译:利用核磁共振波谱法研究了d-(GTGGAATTCCAC) 2 和d-(GTGGTTAACCAC) 2 的基本质子附近水化水分子的停留时间。在NOESY和ROESY实验中,观察到DNA的基本质子与水合水之间的核Overhauser效应(NOE)。在水与双链d-(GTGGAATTCCAC) 2 的中心d-(AATT) 2 段的腺嘌呤2H质子共振之间观察到较大的正NOESY交叉峰。表示存在“水合脊柱”,水分子在DNA上的停留时间长于1纳秒。相反,在双链体d-(GTGGTTAACCAC) 2 的d-(TTAA) 2 片段中未检测到正分子间NOESY交叉峰,表明没有水分子结合具有类似长停留时间的片段在该片段的小凹槽中发生。与观察到的结果相比,这些结果可能与d-(TTAA) 2 段中较小凹槽的宽度大于d-(AATT) 2 段中较小凹槽的宽度相关。以前处于相关的寡核苷酸双链体的B型构型的单晶结构中。本实验证实了来自单晶研究和理论预测的早期实验结果,即核苷酸序列中的5'-dTA-3'步骤中断了小沟中水合的脊柱。

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