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通过核磁共振光谱对d(GCAATTGC)2及其与贝尼尔复合物的结构分析。

Structural analysis of d(GCAATTGC)2 and its complex with berenil by nuclear magnetic resonance spectroscopy.

作者信息

Yoshida M, Banville D L, Shafer R H

机构信息

Department of Pharmaceutical Chemistry, School of Pharmacy, University of California, San Francisco 94143.

出版信息

Biochemistry. 1990 Jul 17;29(28):6585-92. doi: 10.1021/bi00480a006.

Abstract

The structures of d(GCAATTGC)2 and its complex with berenil in solution were analyzed by two-dimensional 1H NMR spectroscopy. Intra- and internucleotide nuclear Overhauser effect (NOE) connectivities demonstrate that the octanucleotide duplex is primarily in the B conformation. Binding with berenil stabilizes the duplex with respect to thermal denaturation by about 10 degrees C, based on the appearance of the imino proton signals. The berenil-d(GCAATTGC)2 system is in fast exchange on the NMR time scale. The two-dimensional NMR data reveal that berenil binds in the minor groove of d(GCAATTGC)2. The aromatic drug protons are placed within 5 A of the H2 proton of both adenines, the H1', H5', and H5" of both thymidines, and the H4', H5', and H5" of the internal guanosine. The amidine protons on berenil are also close to the H2 proton of both adenines. The duplex retains an overall B conformation in the complex with berenil. At 18 degrees C, NOE contacts at longer mixing times indicate the presence of end-to-end association both in the duplex alone and also in its complex with berenil. These intermolecular contacts either vanished or diminished substantially at 45 degrees C. Two molecular models are proposed for the berenil-(GCAATTGC)2 complex; one has hydrogen bonds between the berenil amidine protons and the carbonyl oxygen, O2, of the external thymines, and the other has hydrogen bonds between the drug amidine protons and the purine nitrogen, N3, of the internal adenines. Quantitative analysis of the NOE data favors the second model.

摘要

采用二维¹H NMR光谱分析了d(GCAATTGC)₂及其与贝尼尔在溶液中的复合物的结构。核苷酸内和核苷酸间的核Overhauser效应(NOE)连接性表明,八核苷酸双链体主要呈B构象。基于亚氨基质子信号的出现,与贝尼尔结合使双链体相对于热变性稳定约10℃。在NMR时间尺度上,贝尼尔-d(GCAATTGC)₂系统处于快速交换状态。二维NMR数据显示,贝尼尔结合在d(GCAATTGC)₂的小沟中。芳香族药物质子位于两个腺嘌呤的H2质子、两个胸腺嘧啶的H1'、H5'和H5''以及内部鸟苷的H4'、H5'和H5''的5 Å范围内。贝尼尔上的脒基质子也靠近两个腺嘌呤的H2质子。在与贝尼尔的复合物中,双链体保持整体B构象。在18℃时,较长混合时间的NOE接触表明,单独的双链体及其与贝尼尔的复合物中均存在端对端缔合。这些分子间接触在45℃时消失或显著减少。提出了两种贝尼尔-(GCAATTGC)₂复合物的分子模型;一种模型中,贝尼尔的脒基质子与外部胸腺嘧啶的羰基氧O2之间存在氢键,另一种模型中,药物的脒基质子与内部腺嘌呤的嘌呤氮N3之间存在氢键。对NOE数据的定量分析支持第二种模型。

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