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NMR observation of individual molecules of hydration water bound to DNA duplexes: direct evidence for a spine of hydration water present in aqueous solution

机译:核磁共振观察结合到DNA双链体的单个水合分子:水溶液中存在水合脊柱的直接证据

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The residence times of individual hydration water molecules in the major and minor grooves of DNA were measured by nuclear magnetic resonance (NMR) spectroscopy in aqueous solutions of d-(CGCGAATT CGCG)2 and d-(AAAAATTTTT)2 The experimental observations were nuclear Overhauser effects (NOE) between water protons and the protons of the DNA. The positive sign of NOEs with the thymine methyl groups shows that the residence times of the hydration water molecules near these protons in the major groove of the DNA must be shorter than about 500 Ps, which coincides with the behavior of surface hydration water in peptides and proteins. Negative NOEs were observed with the hydrogen atoms in position 2 of adenine in both duplexes studied. This indicates that a ‘spine of hydration' in the minor groove, as observed by X-ray diffraction in DNA crystals, is present also in solution, with residence times significantly longer than 1 ns. Such residence times are reminiscent of ‘interior' hydration water molecules in globular proteins, which are an integral part of the molecular architecture both in solution and in crystals.
机译:通过d-(CGCGAATT CGCG) 2 和d-(AAAAATTTTT)水溶液中的核磁共振(NMR)光谱测量单个水合水分子在DNA的主要和次要凹槽中的停留时间。 2 实验观察到的是水质子与DNA质子之间的核Overhauser效应(NOE)。带有胸腺嘧啶甲基的NOE的正号表明,靠近这些质子的水合水分子在DNA主槽中的停留时间必须短于约500 Ps,这与肽和肽中表面水合水的行为相吻合。蛋白质。在所研究的两个双链体中,在腺嘌呤2位的氢原子均观察到阴性NOE。这表明溶液中也存在小沟中的“水合脊柱”,这是通过X射线衍射在DNA晶体中观察到的,其停留时间明显长于1 ns。这样的停留时间让人想起球状蛋白质中的“内部”水合水分子,这是溶液和晶体中分子结构不可或缺的一部分。

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