DNA构象态和动力学的核磁共振研究。

D R Kearns
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引用次数: 85

摘要

由于三个不同领域的进展,高分辨率核磁共振技术在溶液中DNA双螺旋结构研究中的应用目前处于快速变化状态。首先,新方法(克隆、酶降解、超声和化学合成)已经开发出来,用于生产大量适合核磁共振研究的短DNA。其次,在引入新的脉冲技术和仪器改进方面,核磁共振领域取得了重大进展。最后,由于最近对短DNA螺旋的x射线衍射研究和左旋Z-DNA的发现,人们对溶液中DNA结构的研究和序列对结构的影响有了更高的兴趣。在这篇综述中,我们讨论了核磁共振技术如何被用于探测DNA性质的各个方面,包括碱基配对结构、呼吸动力学、序列对DNA结构的影响、内部分子运动、环境对DNA的影响以及DNA与小配体的相互作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
NMR studies of conformational states and dynamics of DNA.

The application of high resolution NMR techniques to the investigation of DNA double helices in solution is currently in a rapid state of change as a result of advances in three different fields. First, new methods (cloning, enzymatic degradation, sonication, and chemical synthesis) have been developed for producing large quantities of short DNA suitable for NMR studies. Second, there have been major advances in the field of NMR in terms of the introduction of new pulse techniques and improvements in instrumentation. Finally, as a result of recent X-ray diffraction studies on short DNA helices and the discovery of left-handed Z-DNA there is heightened interest in the study of DNA structures in solution and the effect of sequence on structure. In the present review, we discuss the way in which NMR techniques have been used to probe various aspects of the DNA properties, including base pairing structure, dynamics of breathing, effect of sequence on DNA structure, internal molecular motions, the effect of environment on the DNA, and the interaction of DNA with small ligands.

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