Wilson W D, Wang Y H, Kusuma S, Chandrasekaran S, Boykin D W
Biophys Chem. 1986 Jul;24(2):101-9. doi: 10.1016/0301-4622(86)80003-5.
The interaction of naphthothiophene, phenanthrene and anthracene ring systems, which have amide and ester side chains with cationic groups (synthesized from the aromatic acid chlorides and appropriate amines and alcohols), with calf thymus DNA has been investigated by using viscometric titrations, spectrophotometric binding experiments and 1H-, 31P- and 17O-NMR methods. The viscosity and NMR experiments suggest that all of these compounds bind to DNA by intercalation. These experiments and spectrophotometric binding studies, however, indicate that there is considerable variation in the interaction of these compounds with DNA. These variations can all be explained by the geometry of the ring systems, the position of protons adjacent to the side chains, and the relative sizes of the amide and ester side chains. With the naphthothiophene ester and amide, for example, the planar amide cannot rotate into the plane of the naphthothiophene ring whereas the smaller planar ester can. With this ring system the ester has a significantly higher binding constant than the amide derivative. Additional binding studies with poly[d(A-T)2] and poly[d(G-C)2] have shown that all of these compounds bind more strongly to the A-T- than the G-C-containing polymer. Since the ester compounds do not have hydrogen bond donating groups proximate to the aromatic ring, these results suggest a model for the A-T specificity of these compounds that involves a solvent-mediated hydrogen bond between the C-2 carbonyl of thymine and the carbonyl group of the intercalators.
通过粘度滴定、分光光度结合实验以及¹H-、³¹P-和¹⁷O-NMR方法,研究了具有酰胺和酯侧链且带有阳离子基团(由芳酰氯与合适的胺和醇合成)的萘并噻吩、菲和蒽环系统与小牛胸腺DNA的相互作用。粘度和NMR实验表明,所有这些化合物均通过嵌入作用与DNA结合。然而,这些实验以及分光光度结合研究表明,这些化合物与DNA的相互作用存在相当大的差异。所有这些差异都可以通过环系统的几何形状、侧链相邻质子的位置以及酰胺和酯侧链的相对大小来解释。例如,对于萘并噻吩酯和酰胺,平面酰胺无法旋转到萘并噻吩环的平面内,而较小的平面酯则可以。在这个环系统中,酯的结合常数明显高于酰胺衍生物。对聚[d(A-T)₂]和聚[d(G-C)₂]进行的额外结合研究表明,所有这些化合物与富含A-T的聚合物的结合比与富含G-C的聚合物更强。由于酯化合物在芳环附近没有供氢基团,这些结果提出了一个关于这些化合物A-T特异性的模型,该模型涉及胸腺嘧啶的C-2羰基与嵌入剂的羰基之间通过溶剂介导的氢键。