Shakked Z, Rabinovich D, Kennard O, Cruse W B, Salisbury S A, Viswamitra M A
J Mol Biol. 1983 May 15;166(2):183-201. doi: 10.1016/s0022-2836(83)80005-9.
The crystal structures of the synthetic self-complementary octamer d(G-G-T-A-T-A-C-C) and its 5-bromouracil-containing analogue have been refined to R values of 20% and 14% at resolutions of 1.8 and 2.25 A, respectively. The molecules adopt and A-DNA type double-helical conformation, which is minimally affected by crystal forces. A detailed analysis of the structure shows a considerable influence of the nucleotide sequence on the base-pair stacking patterns. In particular, the electrostatic stacking interactions between adjacent guanine and thymine bases produce symmetric bending of the double helix and a major-groove widening. The sugar-phosphate backbone appears to be only slightly affected by the base sequence. The local variations in the base-pair orientation are brought about by correlated adjustments in the backbone torsion angles and the glycosidic orientation. Sequence-dependent conformational variations of the type observed here may contribute to the specificity of certain protein-DNA interactions.
合成的自我互补八聚体d(G-G-T-A-T-A-C-C)及其含5-溴尿嘧啶的类似物的晶体结构分别在1.8 Å和2.25 Å分辨率下精修至R值为20%和14%。这些分子采用A-DNA型双螺旋构象,受晶体作用力的影响最小。对该结构的详细分析表明,核苷酸序列对碱基对堆积模式有相当大的影响。特别是,相邻鸟嘌呤和胸腺嘧啶碱基之间的静电堆积相互作用会导致双螺旋对称弯曲和大沟变宽。糖磷酸骨架似乎仅受到碱基序列的轻微影响。碱基对取向的局部变化是由骨架扭转角和糖苷取向的相关调整引起的。此处观察到的这种序列依赖性构象变化可能有助于某些蛋白质与DNA相互作用的特异性。