Kellogg G E, Scarsdale J N, Fornari F A
Department of Medicinal Chemistry, School of Pharmacy, Institute for Structural Biology and Drug Discovery, Virginia Commonwealth University, Richmond, VA 23298-01.
Nucleic Acids Res. 1998 Oct 15;26(20):4721-32. doi: 10.1093/nar/26.20.4721.
The computer molecular modeling program HINT (Hydropathic INTeractions), an empirical hydropathic force field function that includes hydrogen bonding, coulombic and hydrophobic terms, was used to study sequence-selective doxorubicin binding/intercalation in the 64 unique CAxy, CGxy, TAxy, TGxy base pair quartet combinations. The CAAT quartet sequence is shown to have the highest binding score of the 64 combinations. Of the two regularly alternating polynucleotides, d(CGCGCG)2and d(TATATA)2, the HINT calculated binding scores reveal doxorubicin binds preferentially to d(TATATA)2. Although interactions of the chromophore with the DNA base pairs defining the intercalation site [I-1] [I+1] and the neighboring [I+2] base pair are predominant, the results obtained with HINT indicate that the base pair [I+3] contributes significantly to the sequence selectivity of doxorubicin by providing an additional hydrogen bonding opportunity for the N3' ammonium of the daunosamine sugar moiety in approximately 25% of the sequences. This observation, that interactions involving a base pair [I+3] distal to the intercalation site play a significant role in stabilizing/destabilizing the intercalation of doxorubicin into the various DNA sequences, has not been previously reported. In general terms, this work shows that molecular modeling and careful analysis of molecular interactions can have a significant role in designing and evaluating nucleotides and antineoplastic agents.
计算机分子建模程序HINT(亲水性相互作用)是一种经验性亲水性力场函数,包含氢键、库仑力和疏水性项,用于研究阿霉素在64种独特的CAxy、CGxy、TAxy、TGxy碱基对四重组合中的序列选择性结合/嵌入。结果表明,在这64种组合中,CAAT四重序列的结合得分最高。在两种规则交替的多核苷酸d(CGCGCG)2和d(TATATA)2中,HINT计算得出的结合得分显示阿霉素优先与d(TATATA)2结合。虽然发色团与定义嵌入位点[I-1][I+1]的DNA碱基对以及相邻的[I+2]碱基对之间的相互作用占主导,但HINT得出的结果表明,碱基对[I+3]通过为大约25%的序列中的柔红糖胺糖部分的N3'铵提供额外的氢键机会,对阿霉素的序列选择性有显著贡献。嵌入位点远端的碱基对[I+3]参与的相互作用在稳定/破坏阿霉素嵌入各种DNA序列中起重要作用,这一观察结果此前尚未见报道。总体而言,这项工作表明分子建模和对分子相互作用的仔细分析在设计和评估核苷酸及抗肿瘤药物方面可发挥重要作用。