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Water-DNA interactions as studied by X-ray and neutron fibre diffraction.

机译:X射线和中子纤维衍射研究的水-DNA相互作用。

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摘要

X-ray fibre-diffraction studies indicate a high degree of stereochemical specificity in interactions between water and the DNA double helix. Evidence for this comes from data that show that the molecular conformations assumed by DNA in fibres are highly reproducible and that the hydration-driven transitions between these conformations are fully reversible. These conformational transitions are induced by varying the relative humidity of the fibre environment and hence its water content. Further evidence for stereochemical specificity comes from the observed dependence of the conformation assumed on the ionic content of the fibre and the nucleotide sequence of the DNA. For some transitions, information on stereochemical pathways has come from real-time X-ray fibre diffraction using synchrotron radiation; information on the location of water with respect to the double helix for a number of DNA conformations has come from neutron fibre diffraction. This structural information from fibre-diffraction studies of DNA is complemented by information from X-ray single-crystal studies of oligonucleotides. If the biochemical processes involving DNA have evolved to exploit the structural features observed in DNA fibres and oligonucleotide single crystals, the challenges in developing alternatives to a water environment can be expected to be very severe.
机译:X射线纤维衍射研究表明,水与DNA双螺旋之间的相互作用具有高度的立体化学特异性。这方面的证据来自数据,这些数据表明纤维中DNA假定的分子构象是高度可复制的,并且这些构象之间的水合驱动转变是完全可逆的。这些构象转变是通过改变纤维环境的相对湿度并因此改变其水含量而引起的。立体化学特异性的进一步证据来自观察到的构象对纤维离子含量和DNA核苷酸序列的依赖性。对于某些过渡,有关立体化学途径的信息来自使用同步加速器辐射进行的实时X射线纤维衍射。关于水相对于许多DNA构象的双螺旋位置的信息来自中子纤维衍射。来自DNA的纤维衍射研究的这种结构信息被寡核苷酸的X射线单晶研究的信息所补充。如果涉及DNA的生化过程已经发展到可以利用DNA纤维和寡核苷酸单晶中观察到的结构特征,那么开发水环境替代品所面临的挑战将非常严峻。

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