Pröpper Kevin, Meindl Kathrin, Sammito Massimo, Dittrich Birger, Sheldrick George M, Pohl Ehmke, Usón Isabel
University of Göttingen, Germany.
Instituto de Biologia Molecular de Barcelona (IBMB-CSIC), Spain.
Acta Crystallogr D Biol Crystallogr. 2014 Jun;70(Pt 6):1743-57. doi: 10.1107/S1399004714007603. Epub 2014 May 30.
Protein-DNA interactions play a major role in all aspects of genetic activity within an organism, such as transcription, packaging, rearrangement, replication and repair. The molecular detail of protein-DNA interactions can be best visualized through crystallography, and structures emphasizing insight into the principles of binding and base-sequence recognition are essential to understanding the subtleties of the underlying mechanisms. An increasing number of high-quality DNA-binding protein structure determinations have been witnessed despite the fact that the crystallographic particularities of nucleic acids tend to pose specific challenges to methods primarily developed for proteins. Crystallographic structure solution of protein-DNA complexes therefore remains a challenging area that is in need of optimized experimental and computational methods. The potential of the structure-solution program ARCIMBOLDO for the solution of protein-DNA complexes has therefore been assessed. The method is based on the combination of locating small, very accurate fragments using the program Phaser and density modification with the program SHELXE. Whereas for typical proteins main-chain α-helices provide the ideal, almost ubiquitous, small fragments to start searches, in the case of DNA complexes the binding motifs and DNA double helix constitute suitable search fragments. The aim of this work is to provide an effective library of search fragments as well as to determine the optimal ARCIMBOLDO strategy for the solution of this class of structures.
蛋白质与DNA的相互作用在生物体遗传活动的各个方面都起着重要作用,如转录、包装、重排、复制和修复。蛋白质与DNA相互作用的分子细节可以通过晶体学得到最佳呈现,而强调对结合原理和碱基序列识别深入理解的结构对于理解潜在机制的微妙之处至关重要。尽管核酸的晶体学特性往往给主要为蛋白质开发的方法带来特定挑战,但仍有越来越多高质量的DNA结合蛋白结构得以确定。因此,蛋白质-DNA复合物的晶体学结构解析仍然是一个具有挑战性的领域,需要优化的实验和计算方法。因此,对结构解析程序ARCIMBOLDO解析蛋白质-DNA复合物的潜力进行了评估。该方法基于使用Phaser程序定位小的、非常精确的片段并结合使用SHELXE程序进行密度修正。对于典型蛋白质,主链α螺旋提供了理想的、几乎普遍存在的小片段来启动搜索,而对于DNA复合物,结合基序和DNA双螺旋构成了合适的搜索片段。这项工作的目的是提供一个有效的搜索片段库,并确定解析这类结构的最佳ARCIMBOLDO策略。