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序列依赖诱导 DNA 弯曲的分子基础。

Molecular basis for sequence-dependent induced DNA bending.

机构信息

Department of Chemistry, Georgia State University, Atlanta, GA 30302, USA.

出版信息

Chembiochem. 2013 Feb 11;14(3):323-31. doi: 10.1002/cbic.201200706. Epub 2013 Jan 25.

Abstract

With a growing understanding of the microstructural variations of DNA, it has become apparent that subtle conformational features are essential for specific DNA molecular recognition and function. DNA containing an A-tract has a narrow minor groove and a globally bent conformation but the structural features of alternating AT DNA are less well understood. Several studies indicate that alternating AT sequences are polymorphic with different global and local properties from A-tracts. The mobility of alternating AT DNA in gel electrophoresis is extensively reduced upon binding with minor-groove binding agents such as netropsin. Although this suggests that such complexes are bent, similarly to A-tract DNA, direct evidence and structural information on AT DNA and the induced conformational change is lacking. We have used NMR spectroscopy and residual dipolar coupling together with restrained molecular-dynamics simulations to determine the solution structures of an alternating AT DNA segment, with and without netropsin, in order to evaluate the molecular basis of the binding-induced effects. Complex formation causes a significant narrowing of the minor groove and a pronounced change in bending, from a slight bend towards the major groove for the free DNA to a pronounced bend towards the minor groove in the complex. This observation demonstrates that conformational features and the inherent malleability of AT sequences are essential for specific molecular recognition and function. These results take the field of DNA structures into new areas while opening up avenues to target novel DNA sequences.

摘要

随着对 DNA 微观结构变化的认识不断加深,人们已经清楚地认识到,细微的构象特征对于特定的 DNA 分子识别和功能至关重要。含有 A 链的 DNA 具有狭窄的小沟和整体弯曲的构象,但交替 AT DNA 的结构特征还不太清楚。有几项研究表明,交替 AT 序列具有多态性,与 A 链的全局和局部性质不同。在与小沟结合剂(如 netropsin)结合后,交替 AT DNA 在凝胶电泳中的迁移率会大大降低。尽管这表明此类复合物是弯曲的,与 A 链 DNA 相似,但缺乏关于 AT DNA 的直接证据和结构信息,以及诱导的构象变化。我们使用 NMR 光谱和残余偶极耦合以及约束分子动力学模拟来确定带有和不带有 netropsin 的交替 AT DNA 片段的溶液结构,以评估结合诱导效应的分子基础。复合物的形成导致小沟明显变窄,并且弯曲程度明显改变,从自由 DNA 的稍微向大沟弯曲变为复合物中的明显向小沟弯曲。这一观察结果表明,构象特征和 AT 序列的固有柔韧性对于特定的分子识别和功能至关重要。这些结果将 DNA 结构领域带入了新的领域,同时为靶向新的 DNA 序列开辟了途径。

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