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DNA晶体中d(G x G)反向Hoogsteen、d(G x T)反向摆动和d(G x C)反向沃森-克里克碱基对的结构及相对稳定性

The structures and relative stabilities of d(G x G) reverse Hoogsteen, d(G x T) reverse wobble, and d(G x C) reverse Watson-Crick base-pairs in DNA crystals.

作者信息

Mooers B H, Eichman B F, Ho P S

机构信息

Department of Biochemistry and Biophysics, Oregon State University, Corvallis 97331, USA.

出版信息

J Mol Biol. 1997 Jun 27;269(5):796-810. doi: 10.1006/jmbi.1997.1100.

DOI:10.1006/jmbi.1997.1100
PMID:9223642
Abstract

We have solved the structures of the homoduplex d(Gm5CGCGCG)2, and the heteroduplexes d(GCGCGCG)/d(TCGCGCG) and d(GCGCGCG)/d(CCGCGCG). The structures form six base-pairs of identical Z-DNA duplexes with single nucleotides overhanging at the 5'-ends. The overhanging nucleotide from one strand remains stacked and sandwiched between the blunt-ends of two adjacent Z-DNA duplexes, while the overhanging base of the opposing strand is extra-helical. The stacked and the extra-helical bases from adjacent duplexes pair to form a distorted d(G x G) reverse Hoogsteen base-pair in the d(Gm5CGCGCG)2 homoduplex, and d(G x T) reverse wobble and d(G x C) reverse Watson-Crick base-pairs in the d(GCGCGCG)/d(TCGCGCG) and d(GCGCGCG)/d(CCGCGCG) heteroduplexes, respectively. Interestingly, only the d(G,T) and d(G x C) base-pairs were observed in the heteroduplexes, suggesting that both the d(G x T) reverse wobble and d(G x C) reverse Watson-Crick base-pairs are more stable in this crystal environment than the d(G x G) reverse Hoogsteen base-pair. To estimate the relative stability of the three types of reverse base-pairs, crystals were grown using various mixtures of sequences and their strand compositions analyzed by mass spectrometry. The d(G x C) reverse Watson-Crick base-pair was estimated to be more stable by approximately 1.5 kcal/mol and the d(G x T) reverse wobble base-pair more stable by approximately 0.5 kcal/mol than the d(G x G) reverse Hoogsteen base-pair. The step during crystallization responsible for discriminating between the strands in the crystal is highly cooperative, suggesting that it occurs during the initial nucleating event of crystal growth.

摘要

我们解析了同型双链体d(Gm5CGCGCG)2以及异型双链体d(GCGCGCG)/d(TCGCGCG)和d(GCGCGCG)/d(CCGCGCG)的结构。这些结构形成了六个相同的Z-DNA双链体碱基对,5'-端有单核苷酸突出。一条链上突出的核苷酸保持堆积状态,并夹在两个相邻Z-DNA双链体的平端之间,而相反链上突出的碱基则处于螺旋外。相邻双链体中堆积的碱基和螺旋外的碱基配对,在d(Gm5CGCGCG)2同型双链体中形成一个扭曲的d(G×G)反向Hoogsteen碱基对,在d(GCGCGCG)/d(TCGCGCG)和d(GCGCGCG)/d(CCGCGCG)异型双链体中分别形成d(G×T)反向摆动和d(G×C)反向沃森-克里克碱基对。有趣的是,在异型双链体中仅观察到d(G,T)和d(G×C)碱基对,这表明在这种晶体环境中,d(G×T)反向摆动和d(G×C)反向沃森-克里克碱基对比d(G×G)反向Hoogsteen碱基对更稳定。为了估计这三种类型反向碱基对的相对稳定性,使用不同序列混合物培养晶体,并通过质谱分析其链组成。据估计,d(G×C)反向沃森-克里克碱基对比d(G×G)反向Hoogsteen碱基对稳定约1.5千卡/摩尔,d(G×T)反向摆动碱基对比d(G×G)反向Hoogsteen碱基对稳定约0.5千卡/摩尔。晶体形成过程中负责区分晶体中链的步骤具有高度协同性,表明它发生在晶体生长的初始成核事件期间。

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