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Complicated water orientations in the minor groove of the B-DNA decamer d(CCATTAATGG)2 observed by neutron diffraction measurements

机译:通过中子衍射测量观察到B-DNA decamer d(CCATTAATGG)2小沟中复杂的水取向

摘要

It has long been suspected that the structure and function of a DNA duplex can be strongly dependent on its degree of hydration. By neutron diffraction experiments, we have succeeded in determining most of the hydrogen (H) and deuterium (D) atomic positions in the decameric d(CCATTAATGG)2 duplex. Moreover, the D positions in 27 D2O molecules have been determined. In particular, the complex water network in the minor groove has been observed in detail. By a combined structural analysis using 2.0 Å resolution X-ray and 3.0 Å resolution neutron data, it is clear that the spine of hydration is built up, not only by a simple hexagonal hydration pattern (as reported in earlier X-ray studies), but also by many other water bridges hydrogen-bonded to the DNA strands. The complexity of the hydration pattern in the minor groove is derived from an extraordinary variety of orientations displayed by the water molecules.
机译:长期以来一直怀疑DNA双链体的结构和功能可能强烈取决于其水合程度。通过中子衍射实验,我们已经成功地确定了十聚d(CCATTAATGG)2双链体中的大部分氢(H)和氘(D)原子位置。此外,已经确定了27个D2O分子中的D位置。特别是,已观察到小沟中复杂的水网。通过使用2.0 y分辨率的X射线和3.0 y分辨率的中子数据进行的组合结构分析,很明显,不仅通过简单的六角形水合作用模式(如早期X射线研究中所报道的)建立了水合脊柱,而且还通过许多其他水桥与DNA链氢键结合。小凹槽中水合图案的复杂性是由水分子显示出的各种不同取向所导致的。

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