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2
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3
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本文引用的文献

1
The contribution of cytosine protonation to the stability of parallel DNA triple helices.胞嘧啶质子化对平行DNA三链螺旋稳定性的贡献。
J Mol Biol. 1998 Feb 6;275(5):811-22. doi: 10.1006/jmbi.1997.1520.
2
Solution structures of DNA.RNA hybrids with purine-rich and pyrimidine-rich strands: comparison with the homologous DNA and RNA duplexes.含有富含嘌呤链和富含嘧啶链的DNA.RNA杂交体的溶液结构:与同源DNA和RNA双链体的比较。
Biochemistry. 1998 Jan 6;37(1):73-80. doi: 10.1021/bi9719713.
3
Solution conformation of an intramolecular DNA triplex containing a nonnucleotide linker: comparison with the DNA duplex.含非核苷酸连接子的分子内DNA三链体的溶液构象:与DNA双链体的比较
Biochemistry. 1997 Nov 25;36(47):14502-11. doi: 10.1021/bi970710q.
4
A model for the [C+-GxC]n triple helix derived from observation of the C+-GxC base triplet in a crystal structure.一种源自对晶体结构中C⁺-GxC碱基三联体观察的[C⁺-GxC]n三链螺旋模型。
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Solution structure of an intramolecular DNA triplex containing an N7-glycosylated guanine which mimics a protonated cytosine.包含模拟质子化胞嘧啶的N7-糖基化鸟嘌呤的分子内DNA三链体的溶液结构。
Biochemistry. 1997 Mar 4;36(9):2659-68. doi: 10.1021/bi962438a.
6
Determination of sugar conformations by NMR in larger DNA duplexes using both dipolar and scalar data: application to d(CATGTGACGTCACATG)2.利用偶极和标量数据通过核磁共振确定较大DNA双链体中的糖构象:应用于d(CATGTGACGTCACATG)2
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7
Solution structure of an antiparallel purine motif triplex containing a T.CG pyrimidine base triple.包含T.CG嘧啶碱基三联体的反平行嘌呤基序三链体的溶液结构
Structure. 1996 Apr 15;4(4):425-35. doi: 10.1016/s0969-2126(96)00048-2.
8
Prediction of the stability of DNA triplexes.DNA三链体稳定性的预测。
Proc Natl Acad Sci U S A. 1996 Apr 30;93(9):4320-5. doi: 10.1073/pnas.93.9.4320.
9
Studies of base pair kinetics by NMR measurement of proton exchange.通过核磁共振测量质子交换对碱基对动力学进行的研究。
Methods Enzymol. 1995;261:383-413. doi: 10.1016/s0076-6879(95)61018-9.
10
How to generate accurate solution structures of double-helical nucleic acid fragments using nuclear magnetic resonance and restrained molecular dynamics.如何利用核磁共振和受限分子动力学生成双螺旋核酸片段的精确溶液结构。
Methods Enzymol. 1995;261:3-44. doi: 10.1016/s0076-6879(95)61003-0.

包含相邻和非相邻CG.C+三联体的分子内DNA三链螺旋结构的比较。

Comparison of the solution structures of intramolecular DNA triple helices containing adjacent and non-adjacent CG.C+ triplets.

作者信息

Asensio J L, Brown T, Lane A N

机构信息

Division of Molecular Structure, National Institute for Medical Research, The Ridgeway, Mill Hill, London NW7 1AA, UK.

出版信息

Nucleic Acids Res. 1998 Aug 15;26(16):3677-86. doi: 10.1093/nar/26.16.3677.

DOI:10.1093/nar/26.16.3677
PMID:9685482
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC147772/
Abstract

The solution conformations of the intramolecular triple helices d(AGAAGA-X-TCTTCT-X-TC+TTC+T) and d(AAGGAA-X-TTCCTT-X-TTC+C+TT) (X = non-nucleotide linker) have been determined by NMR.1H NMR spectra in H2O showed that the third strand cytosine residues are fully paired with the guanine residues, each using two Hoogsteen hydrogen bonds. Determination of the13C chemical shifts of the cytosine C6 and C5 and their one-bond coupling constants (1 J CH) conclusively showed that the Hoogsteen cytosine residues are protonated at N3. The global conformations of the two molecules determined with >19 restraints per residue are very similar (RMSD = 0.96 A). However, some differences in local conformation and dynamics were observed for the central two base triplets of the two molecules. The C N3H were less labile in adjacent CG.C+triplets than in non-adjacent ones, indicating that the adjacent charge does not kinetically destabilize these triplets. The sugar conformations of the two adjacent cytosine residues were different and the 5'-residue was atypical of protonated cytosine. Hence, there are subtle effects of the interaction between two adjacent cytosine residues. The central two purines in each sequence showed non-standard backbone conformations, averaging between gamma approximately 60 degrees and gamma approximately 180 degrees. This may be related to the difference in the dependence of the thermodynamic stability on pH observed for these two sequences.

摘要

已通过核磁共振确定了分子内三链螺旋d(AGAAGA-X-TCTTCT-X-TC+TTC+T)和d(AAGGAA-X-TTCCTT-X-TTC+C+TT)(X = 非核苷酸连接体)的溶液构象。在H2O中的1H核磁共振谱表明,第三条链的胞嘧啶残基与鸟嘌呤残基完全配对,每个都使用两个Hoogsteen氢键。胞嘧啶C6和C5的13C化学位移及其一键耦合常数(1JCH)的测定最终表明,Hoogsteen胞嘧啶残基在N3处质子化。每个残基使用超过19个约束确定的两个分子的整体构象非常相似(均方根偏差 = 0.96 Å)。然而,观察到两个分子中间的两个碱基三联体在局部构象和动力学上存在一些差异。相邻CG.C+三联体中的C N3H比非相邻三联体中的更稳定,这表明相邻电荷在动力学上不会使这些三联体不稳定。两个相邻胞嘧啶残基的糖构象不同,5'-残基是质子化胞嘧啶的非典型构象。因此,两个相邻胞嘧啶残基之间的相互作用存在微妙影响。每个序列中间的两个嘌呤显示出非标准的主链构象,γ平均在约60度和约180度之间。这可能与观察到的这两个序列的热力学稳定性对pH的依赖性差异有关。