Drew H R, Wing R M, Takano T, Broka C, Tanaka S, Itakura K, Dickerson R E
Proc Natl Acad Sci U S A. 1981 Apr;78(4):2179-83. doi: 10.1073/pnas.78.4.2179.
The crystal structure of the synthetic DNA dodecamer d(CpGpCpGpApApTpTpCpGpCpG) has been refined to a residual error of R = 17.8% at 1.9-A resolution (two-sigma data). The molecule forms slightly more than one complete turn of right-handed double-stranded B helix. The two ends of the helix overlap and interlock minor grooves with neighboring molecules up and down a 2(1) screw axis, producing a 19 degrees bend in helix axis over the 11-base-pair steps of the dodecamer. In the center of the molecule, where perturbation is least, the helix has a mean rotation of 36.9 degrees per step, or 9.8 base pairs per turn. The mean propeller twist (total dihedral angle between base planes) between A . T base pairs in the center of the molecule is 17.3 degrees, and that between C . G pairs on the two ends averages 11.5 degrees. Individual deoxyribose ring conformations as measured by the C5'-C4'-C3'-O3' torsion angle delta, exhibit an approximately Gaussian distribution centered around the C1'-exo position with delta avg = 123 degrees and a range of 79 degrees to 157 degrees. Purine sugars cluster at high delta values, and pyrimidine sugars cluster at lower delta. A tendency toward 2-fold symmetry in sugar conformation about the center of the molecule is detectable in spite of the destruction of ideal 2-fold symmetry by the molecular bending. More strikingly, sugar conformations of paired based appear to follow a "principle of anticorrelation," with delta values lying approximately the same distance to either side of the center value, delta = 123 degrees. This same anticorrelation is also observed in other DNA and DNA . RNA structures.
合成的DNA十二聚体d(CpGpCpGpApApTpTpCpGpCpG)的晶体结构已在1.9埃分辨率(2σ数据)下精修至残余误差R = 17.8%。该分子形成略多于一圈的右手双链B型螺旋。螺旋的两端相互重叠,并在2(1)螺旋轴上下与相邻分子的小沟互锁,在十二聚体的11个碱基对步长上使螺旋轴产生19度的弯曲。在分子中心,扰动最小,螺旋每步平均旋转36.9度,即每圈9.8个碱基对。分子中心A.T碱基对之间的平均螺旋桨扭转(碱基平面之间的总二面角)为17.3度,两端C.G碱基对之间的平均螺旋桨扭转为11.5度。通过C5'-C4'-C3'-O3'扭转角δ测量的单个脱氧核糖环构象呈现出以C1'-外向位置为中心的近似高斯分布,δ平均值为123度,范围为79度至157度。嘌呤糖聚集在高δ值处,嘧啶糖聚集在较低δ值处。尽管分子弯曲破坏了理想的2倍对称性,但仍可检测到糖构象围绕分子中心有2倍对称的趋势。更引人注目的是,配对碱基的糖构象似乎遵循“反相关原则”,δ值到中心值δ = 123度两侧的距离大致相同。在其他DNA和DNA.RNA结构中也观察到了同样的反相关现象。