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由六聚乙二醇单元连接的分子内DNA三链体的溶液结构:d(AGAGAGAA-(EG)6-TTCTCTCT-(EG)6-TCTCTCTT)

Solution structure of an intramolecular DNA triplex linked by hexakis(ethylene glycol) units: d(AGAGAGAA-(EG)6-TTCTCTCT-(EG)6-TCTCTCTT).

作者信息

Tarköy M, Phipps A K, Schultze P, Feigon J

机构信息

Department of Chemistry and Biochemistry, Molecular Biology Institute, University of California, Los Angeles 90095-1569, USA.

出版信息

Biochemistry. 1998 Apr 28;37(17):5810-9. doi: 10.1021/bi9728102.

Abstract

A DNA molecule was designed and synthesized with three octanucleotide stretches linked by two hexakis(ethylene glycol) chains to form an intramolecular triplex in solution. The structural data obtained from a series of NMR NOESY spectra yielded interproton distances, and COSY experiments provided dihedral angle information for analysis of deoxyribose ring pucker. Using distance geometry followed by simulated annealing with restrained molecular dynamics and relaxation matrix refinement, a well-refined ensemble of conformations was calculated. Although some NOE cross-peaks involving protons of the hexakis(ethylene glycol) linker could be identified, most could not be assigned and the conformations of the linkers were not determined. The deoxyribose conformations are predominantly of the S type, except for the protonated cytosine residues in the third strand which show hybrid N and S character. Overall, the duplex part of the molecule resembles a B-DNA double helix with the third strand bound in its major groove by Hoogsteen hydrogen bonds. This structure provides a basis for comparison with triplexes containing noncanonical or nonnatural nucleotides.

摘要

设计并合成了一种DNA分子,它由三个八核苷酸片段通过两条六聚乙二醇链连接而成,在溶液中形成分子内三链体。从一系列核磁共振NOESY谱获得的结构数据给出了质子间距离,而COSY实验提供了二面角信息,用于分析脱氧核糖环的皱折。通过距离几何法,随后进行约束分子动力学模拟退火和松弛矩阵精修,计算出了一组精修的构象。虽然可以识别出一些涉及六聚乙二醇连接体质子的NOE交叉峰,但大多数无法归属,连接体的构象也未确定。除了第三链中质子化的胞嘧啶残基表现出N型和S型混合特征外,脱氧核糖构象主要为S型。总体而言,该分子的双链部分类似于B-DNA双螺旋,第三链通过Hoogsteen氢键结合在其大沟中。这种结构为与含有非规范或非天然核苷酸的三链体进行比较提供了基础。

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