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通过核磁共振光谱法测定的与荧光双嵌入剂TOTO形成的DNA复合物的溶液结构。

Solution structure of a DNA complex with the fluorescent bis-intercalator TOTO determined by NMR spectroscopy.

作者信息

Spielmann H P, Wemmer D E, Jacobsen J P

机构信息

Department of Chemistry, Odense University, Denmark.

出版信息

Biochemistry. 1995 Jul 11;34(27):8542-53. doi: 10.1021/bi00027a004.

Abstract

We have used two-dimensional 1H NMR spectroscopy to determine the solution structure of the DNA oligonucleotide d(5'-CGCTAGCG-3')2 complexed with the bis-intercalating dye 1,1'-(4,4,8,8-tetramethyl-4,8-diazaundecamethylene)bis[4-(3-methyl -2,3- dihydrobenzo-1,3-thiazolyl-2-methylidene)qui nolinium] tetraiodide (TOTO). The determination of the structure was based on total relaxation matrix analysis of the NOESY cross-peak intensities using the program MARDIGRAS. Improved procedures to consider the experimental "noise" in NOESY spectra during these calculations have been employed. The NOE-derived distance restraints were applied in restrained molecular dynamics calculations. Twenty final structures each were generated for the TOTO complex from both A-form and B-form dsDNA starting structures. The root-mean-square (rms) deviation of the coordinates for the 40 structures of the complex was 1.45 A. The local DNA structure is distorted in the complex. The helix is unwound by 60 degrees and has an overall helical repeat of 12 base pairs, caused by bis-intercalation of TOTO. The poly(propylenamine) linker chain is located in the minor groove of dsDNA. Calculations indicate that the benzothiazole ring system is twisted relative to the quinoline in the uncomplexed TOTO molecule. The site selectivity of TOTO for the CTAG-CTAG site is explained by its ability to adapt to the base pair propeller twist of dsDNA to optimize stacking and the hydrophobic interaction between the thymidine methyl group and the benzothiazole ring. There is a 3000-fold fluorescence enhancement upon binding of TOTO to dsDNA. Rotation about the cyanine methine bonds is possible in free TOTO, allowing relaxation nonradiatively. When bound to dsDNA, the benzothiazole ring and the quinolinium ring are clamped by the nucleobases preventing this rotation, and the chromophore loses excitation energy by fluorescence instead.

摘要

我们使用二维¹H NMR光谱法确定了与双插入染料1,1'-(4,4,8,8-四甲基-4,8-二氮杂十一亚甲基)双[4-(3-甲基-2,3-二氢苯并-1,3-噻唑基-2-亚甲基)喹啉鎓]四碘化物(TOTO)复合的DNA寡核苷酸d(5'-CGCTAGCG-3')₂的溶液结构。结构的确定基于使用程序MARDIGRAS对NOESY交叉峰强度进行的全弛豫矩阵分析。在这些计算过程中,采用了改进的程序来考虑NOESY光谱中的实验“噪声”。源自NOE的距离限制被应用于受限分子动力学计算。从A-form和B-form双链DNA起始结构分别为TOTO复合物生成了20个最终结构。复合物的40个结构的坐标的均方根(rms)偏差为1.45 Å。复合物中局部DNA结构发生扭曲。由于TOTO的双插入作用,螺旋解开了60度,并且具有12个碱基对 的整体螺旋重复。聚(丙烯胺)连接链位于双链DNA的小沟中。计算表明,在未复合的TOTO分子中,苯并噻唑环系统相对于喹啉发生了扭曲。TOTO对CTAG-CTAG位点的位点选择性可以通过其适应双链DNA碱基对螺旋桨扭曲以优化堆积以及胸苷甲基与苯并噻唑环之间的疏水相互作用的能力来解释。TOTO与双链DNA结合后荧光增强3000倍。在游离的TOTO中,围绕花青次甲基键的旋转是可能的,从而允许非辐射弛豫。当与双链DNA结合时,苯并噻唑环和喹啉鎓环被核碱基夹住,阻止了这种旋转,并且发色团通过荧光失去激发能。

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