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通过核磁共振、能量最小化和分子动力学对N-乙酰-2-氨基芴(AAF)修饰的DNA寡聚物进行结构表征。

Structural characterization of an N-acetyl-2-aminofluorene (AAF) modified DNA oligomer by NMR, energy minimization, and molecular dynamics.

作者信息

O'Handley S F, Sanford D G, Xu R, Lester C C, Hingerty B E, Broyde S, Krugh T R

机构信息

Department of Chemistry, University of Rochester, New York 14627.

出版信息

Biochemistry. 1993 Mar 16;32(10):2481-97. doi: 10.1021/bi00061a005.

Abstract

An N-acetyl-2-aminofluorene (AAF) modified deoxyoligonucleotide duplex, d(C1-C2-A3-C4-[AAF-G5]-C6-A7-C8-C9).d(G10-G11-T12-G13-C14-++ +G15-T16-G17-G18), was studied by one- and two-dimensional NMR spectroscopy. Eight of the nine complementary nucleotides form Watson-Crick base pairs, as shown by NOEs between the guanine imino proton and cytosine amino protons for G.C base pairs or by an NOE between the thymine imino proton and adenine H2 proton for A.T base pairs. The AAF-G5 and C14 bases show no evidence of complementary hydrogen bond formation to each other. The AAF-G5 base adopts a syn conformation, as indicated by NOEs between the G5 imino proton and the A3-H3' and A3-H2'/H2" protons and by NOEs between the fluorene-H1 proton of AAF and the G5-H1' or C6-H1' proton. The NOEs from the C4-H6 proton to C4 sugar protons are weak, and thus the glycosidic torsion angle in this nucleotide is not well defined by these NMR data. The remaining bases are in the anti conformation, as depicted by the relative magnitude of the H8/H6 to H2' NOEs when compared to the H8/H6 to H1' NOEs. The three base pairs on each end of the duplex exhibit NOEs characteristic of right-handed B-form DNA. Distance restraints obtained from NOESY data recorded at 32 degrees C using a 100-ms mixing time were used in conformational searches by molecular mechanics energy minimization studies. The final, unrestrained, minimum-energy conformation was then used as input for an unrestrained molecular dynamics simulation. Chemical exchange cross peaks are observed, and thus the AAF-9-mer exists in more than a single conformation on the NMR time scale. The NMR data, however, indicate the presence of a predominant conformation (> or = 70%). The structure of the predominant conformation of the AAF-9-mer shows stacking of the fluorene moiety on an adjacent base pair, exhibiting features of the base-displacement [Grunberger, D., Nelson, J. H., et al. (1970) Proc. Natl. Acad. Sci. U.S.A. 66, 488-494] and insertion-denaturation models [Fuchs, R.P.P., & Daune, M. (1971) FEBS Lett. 14, 206-208], while the distal ring of the fluorene moiety protrudes into the minor groove.

摘要

通过一维和二维核磁共振光谱研究了一种N - 乙酰 - 2 - 氨基芴(AAF)修饰的脱氧寡核苷酸双链体d(C1 - C2 - A3 - C4 - [AAF - G5] - C6 - A7 - C8 - C9).d(G10 - G11 - T12 - G13 - C14 - +++G15 - T16 - G17 - G18)。九个互补核苷酸中的八个形成沃森 - 克里克碱基对,对于G.C碱基对,鸟嘌呤亚氨基质子与胞嘧啶氨基质子之间的核Overhauser效应(NOE)表明了这一点;对于A.T碱基对,胸腺嘧啶亚氨基质子与腺嘌呤H2质子之间的NOE也表明了这一点。AAF - G5和C14碱基之间没有形成互补氢键的证据。AAF - G5碱基采取顺式构象,这由G5亚氨基质子与A3 - H3'和A3 - H2'/H2"质子之间的NOE以及AAF的芴 - H1质子与G5 - H1'或C6 - H1'质子之间的NOE所表明。从C4 - H6质子到C4糖质子的NOE较弱,因此这些核磁共振数据不能很好地确定该核苷酸中的糖苷扭转角。其余碱基处于反式构象,这通过将H8/H6与H2'的NOE与H8/H6与H1'的NOE的相对大小进行比较来描绘。双链体两端的三个碱基对表现出右手B型DNA特有的NOE。在32℃下使用100毫秒混合时间记录的NOESY数据获得的距离限制用于通过分子力学能量最小化研究进行构象搜索。然后将最终的无约束最小能量构象用作无约束分子动力学模拟的输入。观察到化学交换交叉峰,因此在核磁共振时间尺度上,AAF - 9聚体以不止一种构象存在。然而,核磁共振数据表明存在一种主要构象(≥70%)。AAF - 9聚体主要构象的结构显示芴部分堆积在相邻碱基对上,呈现碱基置换[格鲁恩贝格尔,D.,纳尔逊,J. H.等人(1970年)美国国家科学院院刊66,488 - 494]和插入 - 变性模型[富克斯,R.P.P.,& 多纳,M.(1971年)欧洲生物化学学会联合会快报14,206 - 208]的特征,而芴部分的远端环突出到小沟中。

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