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利用核Overhauser效应的限制以及二维¹H核磁共振谱中交叉峰精细结构的定量分析对d-(AAAAATTTTT)₂进行构象研究。

Conformational studies of d-(AAAAATTTTT)2 using constraints from nuclear overhauser effects and from quantitative analysis of the cross-peak fine structures in two-dimensional 1H nuclear magnetic resonance spectra.

作者信息

Celda B, Widmer H, Leupin W, Chazin W J, Denny W A, Wüthrich K

机构信息

Institut für Molekularbiologie und Biophysik, Eidgenössische Technische Hochschule-Hönggerberg, Zürich, Switzerland.

出版信息

Biochemistry. 1989 Feb 21;28(4):1462-71. doi: 10.1021/bi00430a006.

Abstract

The conformation at the dA-dT junction in d-(AAAAATTTTT)2 was investigated by using a variety of phase-sensitive two-dimensional nuclear magnetic resonance experiments at 500 MHz for detailed studies of the deoxyribose ring puckers. Conformational constraints were collected from two-dimensional nuclear Overhauser enhancement spectra recorded with short mixing times and from quantitative simulations of the cross-peaks in two-dimensional correlated spectra. Overall, the decamer duplex adopts a conformation of the B-DNA type, and for dA4 and dA5 the pseudorotation phase angle P is in the standard range 150-180 degrees. The deoxyribose puckers for the other nucleotides deviate significantly from the standard B-DNA structure. Spectrum simulations assuming either static deviations from standard B-DNA or a simple two-state dynamic equilibrium between the C2'-endo and C3'-endo forms of the deoxyribose were used to analyze the experimental data. It was thus found that the ring pucker for dT6 deviates from the regular C2'-endo form of B-DNA by a static distortion, with the pseudorotation phase angle P in the range 100-130 degrees, and a similar value of P is indicated for dT7. For the peripheral base pairs dynamic distortions of the C2'-endo form of the deoxyribose were found. In agreement with recent papers on related duplexes containing (dA)n tracts, we observed prominent nuclear Overhauser effects between adenine-2H and deoxyribose-1'H, which could be largely due to pronounced propeller twisting as observed in the crystal structures of (dA)n-containing compounds.

摘要

通过在500兆赫下使用各种相敏二维核磁共振实验,研究了d-(AAAAATTTTT)2中dA-dT连接处的构象,以详细研究脱氧核糖环的褶皱。构象限制条件是从短混合时间记录的二维核Overhauser增强光谱以及二维相关光谱中交叉峰的定量模拟中收集的。总体而言,十聚体双链体采用B-DNA类型的构象,对于dA4和dA5,假旋转相角P在150-180度的标准范围内。其他核苷酸的脱氧核糖褶皱与标准B-DNA结构有显著偏差。使用假设与标准B-DNA存在静态偏差或脱氧核糖的C2'-内型和C3'-内型之间存在简单二态动态平衡的光谱模拟来分析实验数据。结果发现,dT6的环褶皱通过静态畸变偏离了B-DNA的规则C2'-内型,假旋转相角P在100-130度范围内,dT7的P值与之相似。对于外围碱基对,发现了脱氧核糖C2'-内型的动态畸变。与最近关于含有(dA)n片段的相关双链体的论文一致,我们观察到腺嘌呤-2H和脱氧核糖-1'H之间有显著的核Overhauser效应,这在很大程度上可能是由于在含(dA)n化合物的晶体结构中观察到的明显螺旋扭转。

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