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溶液中B型DNA构象的特征与变异:八种DNA拉曼谱带强度的定量分析

Characteristics and variations of B-type DNA conformations in solution: a quantitative analysis of Raman band intensities of eight DNAs.

作者信息

Wartell R M, Harrell J T

出版信息

Biochemistry. 1986 May 6;25(9):2664-71. doi: 10.1021/bi00357a056.

Abstract

Raman spectra were obtained from four bacterial DNAs varying in GC content and four periodic DNA polymers in 0.1 M NaCl at 25 degrees C. A curve fitting procedure was employed to quantify and compare Raman band characteristics (peak location, height, and width) from 400 to 1600 cm-1. This procedure enabled us to determine the minimum number of Raman bands in regions with overlapping peaks. Quantitative comparison of the Raman bands of the eight DNAs provided several new results. All of the DNAs examined required bands near 809 (+/- 7) and 835 (+/- 5) cm-1 to accurately reproduce the experimental spectra. Since bands at these frequencies are associated with A-family and B-family conformations, respectively, this result indicates that all DNAs in solution have a mixture of conformations on the time scale of the Raman scattering process. Band characteristics in the 800-850-cm-1 region exhibited some dependence on CG content and base pair sequence. As previously noted by Thomas and Peticolas [Thomas, G. A., & Peticolas, W. L. (1983) J. Am. Chem. Soc. 105, 993], the poly[d(A)].poly[d(T)] spectra were qualitatively distinct in this region. The A-family band is clearly observed at 816 cm-1. The intensity of this band and that of the B-family band at 841 cm-1 were similar, however, to intensities in the natural DNA spectra. Three bands at 811, 823, and 841 cm-1 were required to reproduce the 800-850-cm-1 region of the poly[d(A-T)].poly[d(A-T)] spectra. This may indicate the presence of three backbone conformations in this DNA polymer. Analysis of intensity vs. GC content for 42 Raman bands confirmed previous assignments of base and backbone vibrations and provided additional information on a number of bands.

摘要

在25摄氏度下,于0.1M氯化钠溶液中,对四种GC含量不同的细菌DNA以及四种周期性DNA聚合物进行了拉曼光谱测定。采用曲线拟合程序对400至1600厘米-1范围内的拉曼谱带特征(峰位置、高度和宽度)进行量化和比较。该程序使我们能够确定峰重叠区域中拉曼谱带的最小数量。对这八种DNA的拉曼谱带进行定量比较得出了几个新结果。所有检测的DNA都需要809(±7)和835(±5)厘米-1附近的谱带来准确重现实验光谱。由于这些频率处的谱带分别与A族和B族构象相关,这一结果表明,溶液中的所有DNA在拉曼散射过程的时间尺度上具有构象混合物。800 - 850厘米-1区域的谱带特征表现出对CG含量和碱基对序列的一定依赖性。如托马斯和佩蒂科拉斯之前所指出的[托马斯,G.A.,&佩蒂科拉斯,W.L.(1983)《美国化学会志》105,993],聚[d(A)]·聚[d(T)]光谱在该区域在质量上是不同的。在816厘米-1处清晰观察到A族谱带。然而,该谱带以及841厘米-1处B族谱带的强度与天然DNA光谱中的强度相似。需要811、823和841厘米-1处的三条谱带来重现聚[d(A - T)]·聚[d(A - T)]光谱的800 - 850厘米-1区域。这可能表明该DNA聚合物中存在三种主链构象。对42条拉曼谱带的强度与GC含量进行分析,证实了先前对碱基和主链振动的归属,并提供了一些谱带的额外信息。

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