Kneale G, Brown T, Kennard O, Rabinovich D
J Mol Biol. 1985 Dec 20;186(4):805-14. doi: 10.1016/0022-2836(85)90398-5.
The synthetic deoxyoctanucleotide d(G-G-G-G-T-C-C-C) crystallizes as an A-type DNA double helix containing two adjacent G . T base-pair mismatches. The structure has been refined to an R-factor of 14% at 2.1 A resolution with 104 solvent molecules located. The two G . T mismatches adopt the "wobble" form of base-pairing. The mismatched bases are linked by a network of water molecules interacting with the exposed functional groups in both the major and minor grooves. The presence of two mispaired bases in the octamer has surprisingly little effect on the global structure of the helix or the backbone and glycosidic torsional angles. Base stacking around the mismatch is perturbed, but the central G-T step shows particularly good base overlap, which may contribute to the relatively high stability of this oligomer.
合成的脱氧八聚核苷酸d(G-G-G-G-T-C-C-C)结晶为一种A型DNA双螺旋结构,其中包含两个相邻的G·T碱基对错配。该结构已在2.1 Å分辨率下精修至R因子为14%,并定位了104个溶剂分子。两个G·T错配采用碱基配对的“摆动”形式。错配碱基通过与大沟和小沟中暴露的官能团相互作用的水分子网络相连。八聚体中两个错配碱基的存在对螺旋的整体结构、主链以及糖苷扭转角的影响出奇地小。错配周围的碱基堆积受到干扰,但中心G-T步显示出特别好的碱基重叠,这可能有助于该寡聚物具有相对较高的稳定性。