Joshua-Tor L, Frolow F, Appella E, Hope H, Rabinovich D, Sussman J L
Department of Structural Biology, Weizmann Institute of Science, Rehovot, Israel.
J Mol Biol. 1992 May 20;225(2):397-431. doi: 10.1016/0022-2836(92)90929-e.
The three-dimensional structure of a DNA tridecamer d(CGCAGAATTCGCG)2 containing bulged adenine bases was determined by single crystal X-ray diffraction methods, at 120 K, to 2.6 A resolution. The structure is a B-DNA type double helix with a single duplex in the asymmetric unit. One of the bulged adenine bases loops out from the double helix, while the other stacks in to it. This is in contrast to our preliminary finding, which indicated that both adenine bases were looped out. This revised model was confirmed by the use of a covalently bound heavy-atom derivative. The conformation of the looped-out bulge hardly disrupts base stacking interactions of the bases flanking it. This is achieved by the backbone making a "loop-the-loop" curve with the extra adenine flipping over with respect to the other nucleotides in the strand. The looped-out base intercalates into the stacked-in bulge site of a symmetrically related duplex. The looped-out and stacked-in bases form an A.A reversed Hoogsteen base-pair that stacks between the surrounding base-pairs, thus stabilizing both bulges. The double helix is frayed at one end with the two "melted" bases participating in intermolecular interactions. A related structure, of the same tridecamer, after soaking the crystals with proflavin, was determined to 3.2 A resolution. The main features of this B-DNA duplex are basically similar to the native tridecamer but differ in detail especially in the conformation of the bulged-out base. Accommodation of a large perturbation such as that described here with minimal disruption of the double helix shows both the flexibility and resiliency of the DNA molecule.
采用单晶X射线衍射方法,在120K下测定了含有凸起腺嘌呤碱基的DNA十三聚体d(CGCAGAATTCGCG)2的三维结构,分辨率达到2.6埃。该结构是一种B-DNA型双螺旋,不对称单元中只有一个双链体。其中一个凸起的腺嘌呤碱基从双螺旋中伸出,而另一个则堆积在其中。这与我们之前的初步发现相反,之前的发现表明两个腺嘌呤碱基都伸出。通过使用共价结合的重原子衍生物,证实了这个修正后的模型。伸出的凸起的构象几乎不会破坏其侧翼碱基的碱基堆积相互作用。这是通过主链形成一个“环中环”曲线来实现的,额外的腺嘌呤相对于链中的其他核苷酸翻转。伸出的碱基插入到对称相关双链体的堆积凸起位点。伸出和堆积的碱基形成一个A·A反向Hoogsteen碱基对,堆积在周围的碱基对之间,从而稳定了两个凸起。双螺旋在一端磨损,两个“熔解”的碱基参与分子间相互作用。在用原黄素浸泡晶体后,测定了同一十三聚体的相关结构,分辨率为3.2埃。这个B-DNA双链体的主要特征与天然十三聚体基本相似,但在细节上有所不同,特别是在凸起碱基的构象方面。以最小程度破坏双螺旋的方式适应如此大的扰动,既显示了DNA分子的灵活性又显示了其弹性。