Ban C, Sundaralingam M
Department of Chemistry, Ohio State University, Columbus 43210, USA.
Biophys J. 1996 Sep;71(3):1222-7. doi: 10.1016/S0006-3495(96)79351-7.
The crystal structure of the alternating 5'-purine start decamer d(GCGCGCGCGC) was found to be in the left-handed Z-DNA conformation. Inasmuch as the A.T base pair is known to resist Z-DNA formation, we substituted A.T base pairs in the dyad-related positions of the decamer duplex. The alternating self-complementary decamer d(GCACGCGTGC) crystallizes in a different hexagonal space group, P6(1)22, with very different unit cell dimensions a = b = 38.97 and c = 77.34 A compared with the all-G.C alternating decamer. The A.T-containing decamer has one strand in the asymmetric unit, and because it is isomorphous to some other A-DNA decamers it was considered also to be right-handed. The structure was refined, starting with the atomic coordinates of the A-DNA decamer d(GCGGGCCCGC), by use of 2491 unique reflections out to 1.9-A resolution. The refinement converged to an R value of 18.6% for a total of 202 nucleotide atoms and 32 water molecules. This research further demonstrates that A.T base pairs not only resist the formation of Z-DNA but can also assist the formation of A-DNA by switching the helix handedness when the oligomer starts with a 5'-purine; also, the length of the inner Z-DNA stretch (d(CG)n) is reduced from an octamer to a tetramer. It may be noted that these oligonucleotide properties are in crystals and not necessarily in solutions.
交替的5'-嘌呤起始十聚体d(GCGCGCGCGC)的晶体结构被发现呈左手Z-DNA构象。由于已知A.T碱基对能阻止Z-DNA的形成,我们在十聚体双链体的二联体相关位置替换了A.T碱基对。交替的自互补十聚体d(GCACGCGTGC)以不同的六方空间群P6(1)22结晶,与全G.C交替十聚体相比,其晶胞尺寸非常不同,a = b = 38.97 Å,c = 77.34 Å。含A.T的十聚体在不对称单元中有一条链,并且由于它与其他一些A-DNA十聚体同晶型,所以也被认为是右手性的。从A-DNA十聚体d(GCGGGCCCGC)的原子坐标开始,利用2491个分辨率达1.9 Å的独立反射对该结构进行了精修。精修收敛到R值为18.6%,涉及总共202个核苷酸原子和32个水分子。这项研究进一步证明,A.T碱基对不仅能阻止Z-DNA的形成,而且当寡聚物以5'-嘌呤起始时,还能通过改变螺旋手性来协助A-DNA的形成;此外,内部Z-DNA区段(d(CG)n)的长度从八聚体减少到四聚体。需要注意的是,这些寡核苷酸特性是在晶体中而非溶液中。