Norman D, Abuaf P, Hingerty B E, Live D, Grunberger D, Broyde S, Patel D J
Department of Biochemistry and Molecular Biophysics, College of Physicians and Surgeons, Columbia University, New York, New York 10032.
Biochemistry. 1989 Sep 5;28(18):7462-76. doi: 10.1021/bi00444a046.
This paper reports on a combined two-dimensional NMR and energy minimization computational characterization of the conformation of the N-(deoxyguanosyl-8-yl)aminofluorene adduct [(AF)G] positioned across adenosine in a DNA oligomer duplex as a function of pH in aqueous solution. This study was undertaken on the d[C1-C2-A3-T4-C5-(AF)G6-C7-T8-A9-C10-C11].[G12-G13-T14 -A15-G16-A17-G18- A19-T20-G21-G22] complementary undecamer [(AF)G 11-mer duplex]. The modification of the single G6 on the pyrimidine-rich strand was accomplished by reaction of the oligonucleotide with N-acetoxy-2-(acetylamino)fluorene and subsequent deacetylation under alkaline conditions. The HPLC-purified modified strand was annealed with the unmodified purine-rich strand to generate the (AF)G 11-mer duplex. The exchangeable and nonexchangeable protons are well resolved and narrow in the NMR spectra of the (AF)G 11-mer duplex so that the base and the majority of sugar nucleic acid protons, as well as several aminofluorene ring protons, have been assigned following analysis of two-dimensional NOESY and COSY data sets at pH 6.9, 30 degrees C in H2O and D2O solution. The NOE distance constraints establish that the glycosidic torsion angle is syn at (AF)G6 and anti at A17, which results in the aminofluorene ring being positioned in the minor groove. A very large downfield shift is detected at the H2' sugar proton of (AF)G6 associated with the (AF)G6[syn].A17[anti] alignment in the (AF)G 11-mer duplex. The NMR parameters demonstrate formation of Watson-Crick C5.G18 and C7.G16 base pairs on either side of the (AF)G6[syn].A17[anti] modification site with the imino proton of G18 more stable to exchange than the imino proton of G16. Several nonexchangeable aminofluorene protons undergo large downfield shifts as do the imino and H8 protons of G16 on lowering of the pH from neutrality to acidic values for the (AF)G 11-mer duplex. Both the neutral and acidic pH conformations have been defined by assigning the NOE constraints in the [C5-(AF)G6-C7].[G16-A17-G18] segment centered about the modification site and incorporating them in distance constrained minimized potential energy calculations in torsion angle space with the DUPLEX program. A series of NOEs between the aminofluorene protons and the DNA sugar protons in the neutral pH conformation establish that the aminofluorene ring spans the minor groove and is directed toward the G16-A17-G18 sugar-phosphate backbone on the partner strand.(ABSTRACT TRUNCATED AT 400 WORDS)
本文报道了在水溶液中,作为pH函数的DNA寡聚体双链体中,位于腺苷对面的N-(脱氧鸟苷-8-基)氨基芴加合物[(AF)G]构象的二维NMR和能量最小化计算联合表征。本研究针对d[C1-C2-A3-T4-C5-(AF)G6-C7-T8-A9-C10-C11].[G12-G13-T14 -A15-G16-A17-G18- A19-T20-G21-G22]互补十一聚体[(AF)G 11-mer双链体]进行。富含嘧啶链上单个G6的修饰通过寡核苷酸与N-乙酰氧基-2-(乙酰氨基)芴反应,随后在碱性条件下脱乙酰化来完成。经HPLC纯化的修饰链与未修饰的富含嘌呤链退火,以生成(AF)G 11-mer双链体。在(AF)G 11-mer双链体的NMR谱中,可交换和不可交换质子得到了很好的分辨且线宽窄,因此在pH 6.9、30℃的H2O和D2O溶液中,对二维NOESY和COSY数据集进行分析后,已归属了碱基、大部分糖核酸质子以及几个氨基芴环质子。NOE距离约束确定糖苷扭转角在(AF)G6处为顺式,在A17处为反式,这导致氨基芴环位于小沟中。在(AF)G 11-mer双链体中,与(AF)G6[顺式].A17[反式]排列相关的(AF)G6的H2'糖质子处检测到非常大的场下移。NMR参数表明在(AF)G6[顺式].A17[反式]修饰位点两侧形成了沃森-克里克C5.G18和C7.G十六进制碱基对,G18的亚氨基质子比G16的亚氨基质子更稳定不易交换。对于(AF)G 11-mer双链体,当pH从中性降低到酸性值时,几个不可交换的氨基芴质子以及G16的亚氨基和H8质子会发生大的场下移。通过在以修饰位点为中心的[C5-(AF)G6-C7].[G16-A17-G18]片段中归属NOE约束,并将其纳入使用DUPLEX程序在扭转角空间中进行距离约束最小化势能计算,确定了中性和酸性pH构象。中性pH构象中氨基芴质子与DNA糖质子之间的一系列NOE表明,氨基芴环跨越小沟并指向互补链上的G16-A17-G18糖磷酸主链。(摘要截断于400字)