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含共有普里布诺启动子序列的合成DNA-RNA杂交十二聚体d(CGTTATAATGCG).r(CGCAUUAUAACG)的高分辨率核磁共振研究

High-resolution NMR study of a synthetic DNA-RNA hybrid dodecamer containing the consensus pribnow promoter sequence: d(CGTTATAATGCG).r(CGCAUUAUAACG).

作者信息

Chou S H, Flynn P, Reid B

机构信息

Howard Hughes Medical Institute, Biochemistry Department, University of Washington, Seattle 98195.

出版信息

Biochemistry. 1989 Mar 21;28(6):2435-43. doi: 10.1021/bi00432a014.

Abstract

The nonsymmetrical double-helical hybrid dodecamer d(CGTTATAATGCG).r(CGCAUUAUAACG) was synthesized with solid-phase phosphoramidite methods and studied by high-resolution 2D NMR. The imino protons were assigned by one-dimensional nuclear Overhauser methods. All the base protons and H1', H2', H2", H3', and H4' sugar protons of the DNA strand and the base protons, H1', H2', and most of the H3'-H4' protons of the RNA strand were assigned by 2D NMR techniques. The well-resolved spectra allowed a qualitative analysis of relative proton-proton distances in both strands of the dodecamer. The chemical shifts of the hybrid duplex were compared to those of the pure DNA double helix with the same sequence (Wemmer et al., 1984). The intrastrand and cross-strand NOEs from adenine H2 to H1' resonances of neighboring base pairs exhibited characteristic patterns that were very useful for checking the spectral assignments, and their highly nonsymmetric nature reveals that the conformations of the two strands are quite different. Detailed analysis of the NOESY and COSY spectra, as well as the chemical shift data, indicate that the RNA strand assumes a normal A-type conformation (C3'-endo) whereas the DNA strand is in the general S domain but not exactly in the normal C2'-endo conformation. The overall structure of this RNA-DNA duplex is different from that reported for hybrid duplexes in solution by other groups (Reid et al., 1983a; Gupta et al., 1985) and is closer to the C3'-endo-C2'-endo hybrid found in poly(dA).poly(dT) and poly(rU).poly(dA) in the fiber state (Arnott et al., 1983, 1986).

摘要

非对称双螺旋杂合十二聚体d(CGTTATAATGCG).r(CGCAUUAUAACG)采用固相亚磷酰胺法合成,并通过高分辨率二维核磁共振进行研究。亚氨基质子通过一维核Overhauser方法进行归属。DNA链的所有碱基质子以及H1'、H2'、H2"、H3'和H4'糖质子,以及RNA链的碱基质子、H1'、H2'和大部分H3'-H4'质子通过二维核磁共振技术进行归属。分辨率良好的谱图使得对十二聚体两条链中相对质子-质子距离进行定性分析成为可能。将杂合双链体的化学位移与具有相同序列的纯DNA双螺旋的化学位移进行了比较(韦默等人,1984年)。从腺嘌呤H2到相邻碱基对H1'共振的链内和链间核Overhauser效应(NOE)呈现出特征模式,这对于检查谱图归属非常有用,并且它们高度不对称的性质表明两条链的构象有很大不同。对核Overhauser效应谱(NOESY)和化学位移相关谱(COSY)谱以及化学位移数据的详细分析表明,RNA链呈现正常的A-型构象(C3'-内型),而DNA链处于一般的S结构域,但并非完全处于正常的C2'-内型构象。这种RNA-DNA双链体的整体结构与其他研究小组报道的溶液中杂合双链体的结构不同(里德等人,1983a;古普塔等人,1985年),并且更接近于在纤维状态的聚(dA)·聚(dT)和聚(rU)·聚(dA)中发现的C3'-内型-C2'-内型杂合体(阿诺特等人,1983年、1986年)。

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