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首页> 外文期刊>Acta crystallographica. Section F, Structural biology communications >DNA conformational transitions inferred from re-evaluation of m vertical bar F-o vertical bar - D vertical bar F-c vertical bar electron-density maps
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DNA conformational transitions inferred from re-evaluation of m vertical bar F-o vertical bar - D vertical bar F-c vertical bar electron-density maps

机译:从重新评估M垂直条F-O垂直条 - D垂直条F-C垂直条电子密度图中推断出DNA构象转换

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摘要

Conformational flexibility of DNA plays important roles in biological processes such as transcriptional regulation and DNA packaging etc. To understand the mechanisms of these processes, it is important to analyse when, where and how DNA shows conformational variations. Recent analyses have indicated that conventional refinement methods do not always provide accurate models of crystallographic heterogeneities and that some information on polymorphism has been overlooked in previous crystallographic studies. In the present study, the m vertical bar F-o vertical bar - D vertical bar F-c vertical bar electron-density maps of double-helical DNA crystal structures were calculated at a resolution equal to or better than 1.5 angstrom and potential conformational transitions were found in 27% of DNA phosphates. Detailed analyses of the m vertical bar F-o vertical bar - D vertical bar F-c vertical bar peaks indicated that some of these unassigned densities correspond to ZI (sic) ZII or A/B -> BI conformational transitions. A relationship was also found between ZI/ZII transitions and metal coordination in Z-DNA from the detected peaks. The present study highlights that frequent transitions of phosphate backbones occur even in crystals and that some of these transitions are affected by the local molecular environment.
机译:DNA的构象灵活性在生物过程中起重要作用,例如转录调节和DNA包装等,以了解这些过程的机制,重要的是分析DNA的时间,DNA如何显示构象变化。最近的分析表明,传统的细化方法并不总是提供准确的晶体异质的模型,并且在先前的晶体研究中被忽略了一些关于多态性的信息。在本研究中,M垂直条垂直条垂直条FC垂直杆FC垂直条电子密度图在等于或优于1.5埃的分辨率下计算,并且在27中发现了潜在的构象转变DNA磷酸的百分比。 M垂直条F-O垂直条 - D垂直条F-C垂直条峰的详细分析表明,这些未分配的密度中的一些对应于Zi(SiC)Zii或A / B - > BI构象过渡。来自检测到峰的Z-DNA中的Zi / Zii转变和金属配位之间也发现了一种关系。本研究突出显示磷酸盐骨干频繁过渡即使在晶体中也会发生,其中一些转变受局部分子环境的影响。

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