Kappen Lizzy S, Lin Yiqing, Jones Graham B, Goldberg Irving H
Department of Biological Chemistry and Molecular Pharmacology, Harvard Medical School, Boston, Massachusetts 02115, USA.
Biochemistry. 2007 Jan 16;46(2):561-7. doi: 10.1021/bi061744d.
Because bulged structures (unpaired bases) in nucleic acids are of general biological significance, it has been of interest to design small molecules as specific probes of bulge function. On the basis of our earlier work with the specific DNA bulge-binding metabolite obtained from the enediyne antitumor antibiotic neocarzinostatin chromophore (NCS-chrom), we have prepared three small helical spirocyclic molecules that most closely mimic the natural product. These wedge-shaped molecules resemble the natural product in having the sugar residue attached to the same five-membered ring system. In one instance, the sugar is aminoglucose in beta-glycosidic linkage, and in the other, two enantiomers have the natural sugar N-methylfucosamine in alpha-glycosidic linkage. All three analogues were found to interfere with bulge-specific cleavage by NCS-chrom and the ability of bulged DNA to serve as a template for DNA polymerase 1 in accordance with their binding affinities for DNA containing a two-base bulge. Comparable results were obtained with the analogues for the less efficiently cleaved three-base bulge DNA structures. In each situation, the enantiomers possessing the natural sugar in alpha-glycosidic linkage are the most potent inhibitors of the cleavage reaction. In the DNA polymerase reactions, again, the closest natural product mimics were the most effective in selectively impeding nucleotide extension at the bulge site, presumably by complex formation. These results demonstrate the potential usefulness of bulge-binding compounds in modifying DNA structure and function and support efforts to design and prepare reactive species of these molecules that can covalently modify bulged DNA.
由于核酸中的凸起结构(未配对碱基)具有普遍的生物学意义,因此设计小分子作为凸起功能的特异性探针一直备受关注。基于我们早期对从烯二炔类抗肿瘤抗生素新制癌菌素发色团(NCS-chrom)获得的特异性DNA凸起结合代谢物的研究工作,我们制备了三种最接近模拟天然产物的小螺旋螺环分子。这些楔形分子与天然产物相似,糖残基连接在相同的五元环系统上。在一种情况下,糖是β-糖苷键连接的氨基葡萄糖,在另一种情况下,两种对映体具有α-糖苷键连接的天然糖N-甲基岩藻糖胺。发现所有三种类似物都根据它们与含有两个碱基凸起的DNA的结合亲和力,干扰NCS-chrom的凸起特异性切割以及凸起DNA作为DNA聚合酶1模板的能力。对于切割效率较低的三碱基凸起DNA结构的类似物也获得了可比的结果。在每种情况下,具有α-糖苷键连接天然糖的对映体是切割反应最有效的抑制剂。在DNA聚合酶反应中,同样,最接近天然产物模拟物在选择性阻碍凸起位点的核苷酸延伸方面最有效,大概是通过形成复合物。这些结果证明了凸起结合化合物在修饰DNA结构和功能方面的潜在用途,并支持设计和制备能够共价修饰凸起DNA的这些分子的活性物种的努力。