Campos Lourdes, Valls Núria, Urpí Lourdes, Gouyette Catherine, Sanmartín Trinidad, Richter Michael, Alechaga Elida, Santaolalla Alicia, Baldini Roberto, Creixell Marc, Ciurans Ruth, Skokan Petr, Pous Joan, Subirana Juan A
Departament d'Enginyeria Química, Universitat Politècnica de Catalunya, E-08028 Barcelona, Spain.
Biophys J. 2006 Aug 1;91(3):892-903. doi: 10.1529/biophysj.106.084210. Epub 2006 May 12.
We present the crystalline organization of 33 all-AT deoxyoligonucleotide duplexes, studied by x-ray diffraction. Most of them have very similar structures, with Watson-Crick basepairs and a standard average twist close to 36 degrees. The molecules are organized as parallel columns of stacked duplexes in a helical arrangement. Such organization of duplexes is very regular and repetitive: all sequences show the same pattern. It is mainly determined by the stacking of the terminal basepairs, so that the twist in the virtual TA base step between neighbor duplexes is always negative, approximately -22 degrees. The distance between the axes of parallel columns is practically identical in all cases, approximately 26 A. Interestingly, it coincides with that found in DNA viruses and fibers in their hexagonal phase. It appears to be a characteristic distance for ordered parallel DNA molecules. This feature is due to the absence of short range intermolecular forces, which are usually due to the presence of CG basepairs at the end of the oligonucleotide sequence. The duplexes apparently interact only through their diffuse ionic atmospheres. The results obtained can thus be considered as intermediate between liquid crystals, fibers, and standard crystal structures. They provide new information on medium range DNA-DNA interactions.
我们展示了通过X射线衍射研究的33个全AT脱氧寡核苷酸双链体的晶体结构。它们中的大多数具有非常相似的结构,含有沃森-克里克碱基对,标准平均扭转角接近36度。分子以螺旋排列的方式组织成平行堆叠双链体的列。这种双链体的组织非常规则且重复:所有序列都显示相同的模式。它主要由末端碱基对的堆积决定,使得相邻双链体之间虚拟TA碱基步的扭转角总是负的,约为-22度。在所有情况下,平行列轴之间的距离实际上是相同的,约为26埃。有趣的是,它与在处于六方相的DNA病毒和纤维中发现的距离一致。它似乎是有序平行DNA分子的一个特征距离。这个特征是由于缺乏短程分子间力,这种力通常是由于寡核苷酸序列末端存在CG碱基对导致的。双链体显然仅通过其扩散的离子氛围相互作用。因此,所获得的结果可被视为介于液晶、纤维和标准晶体结构之间。它们提供了关于中等范围DNA-DNA相互作用的新信息。