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通过核磁共振和分子模拟研究d(CGCAAATTTGCG)2及其与丙脒复合物的水合作用和溶液结构

Hydration and solution structure of d(CGCAAATTTGCG)2 and its complex with propamidine from NMR and molecular modelling.

作者信息

Lane A N, Jenkins T C, Frenkiel T A

机构信息

Division of Molecular Structure, National Institute for Medical Research, Mill Hill, London, UK.

出版信息

Biochim Biophys Acta. 1997 Feb 7;1350(2):205-20. doi: 10.1016/s0167-4781(96)00161-3.

Abstract

The hydration of the d(CGCAAATTTGCG)2 duplex and its complex with a propamidine reporter ligand has been examined in aqueous solution by two-dimensional NMR at two spectrometer frequencies and three temperatures. Quantitative analysis of ROESY and NOESY cross-peaks showed effective correlation times of approximately 0.5 ns at 283 K for DNA-water interactions in the major groove. In some cases the sign of the NOE inverts on changing either the temperature or spectrometer frequency. Larger effective correlation times of approximately 1 ns were observed for water interactions with A5(H2) and A6(H2) atoms located in the minor groove. Interproton NOEs and changes in chemical shifts showed that propamidine binds in the minor groove 5'-AATTT region of the host duplex, but does not displace waters adjacent to either A5(H2) or A6(H2). In the complex, the effective correlation times of these waters increase more than two-fold, possibly as a result of stabilisation due to H-bonded interaction with the amidine groups of the ligand. Hydration of the bound molecule was also found, suggesting that water may contribute to the DNA binding process for bis(amidine) drugs. Structure refinement by a NOE-restrained dynamic annealing procedure revealed that ligand binding is non-centrosymmetric with respect to the duplex, in accordance with the energetically favoured 5'-ATT (= 5'-AAT) sites predicted by analytical molecular modelling. In particular, the bound propamidine spans 3-4 base pairs in the A6-T7-T8 tract and makes close H-bonded contacts with A(N3/O4) acceptors positioned close to the minor groove floor. The refined NMR structure for the DNA-propamidine complex is compared with that determined recently using X-ray crystallographic methods.

摘要

通过二维核磁共振在两个光谱仪频率和三个温度下对d(CGCAAATTTGCG)2双链体及其与丙脒报告配体的复合物在水溶液中的水合作用进行了研究。对ROESY和NOESY交叉峰的定量分析表明,在283 K时,大沟中DNA-水相互作用的有效相关时间约为0.5 ns。在某些情况下,改变温度或光谱仪频率会使NOE的符号反转。在小沟中与A5(H2)和A6(H2)原子相互作用的水观察到约1 ns的更大有效相关时间。质子间NOE和化学位移的变化表明,丙脒结合在宿主双链体的小沟5'-AATTT区域,但不会取代与A5(H2)或A6(H2)相邻的水。在复合物中,这些水的有效相关时间增加了两倍多,这可能是由于与配体的脒基形成氢键相互作用而导致的稳定化结果。还发现了结合分子的水合作用,这表明水可能有助于双(脒)类药物的DNA结合过程。通过NOE约束动态退火程序进行的结构优化表明,配体结合相对于双链体是非中心对称的,这与分析分子建模预测的能量上有利的5'-ATT(=5'-AAT)位点一致。特别是,结合的丙脒在A6-T7-T8片段中跨越3-4个碱基对,并与靠近小沟底部的A(N3/O4)受体形成紧密的氢键接触。将DNA-丙脒复合物的优化NMR结构与最近使用X射线晶体学方法确定的结构进行了比较。

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