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噻唑-lexitropsin与十脱氧核糖核苷酸d-[CGCAATTGCG]2的非嵌入性(1:1)结合的结构和动力学方面:一项1H-NMR和分子建模研究

Structural and dynamic aspects of non-intercalative (1:1) binding of a thiazole-lexitropsin to the decadeoxyribonucleotide d-[CGCAATTGCG]2: An 1H-NMR and molecular modeling study.

作者信息

Kumar S, Bathini Y, Joseph T, Pon R T, Lown J W

机构信息

Department of Chemistry, University of Alberta, Edmonton, Canada.

出版信息

J Biomol Struct Dyn. 1991 Aug;9(1):1-21. doi: 10.1080/07391102.1991.10507890.

DOI:10.1080/07391102.1991.10507890
PMID:1664210
Abstract

The location, orientation and dynamics of a thiazole-containing analogue of distamycin 1 bound to the decadeoxyribonucleotide d-[CGCAATTGCG]2 have been studied by non-exchangable and imino proton NMR resonances of the 1:1 complex. Using NOE difference, COSY and NOESY experiments, lexitropsin (1) was located in the minor groove of DNA at 5'-CAAT sequence. This was concluded by an intermolecular NOE between the ligand and a minor groove A4H2 proton. The NOE cross-correlations in the NOESY map confirmed that the DNA decamer duplex in the 1:1 complex remains in a right-handed B-conformation similar to that in the free decamer. Experiments on non-exchangeable and exchangeable proton NMR resonances placed the N-formylamino terminus of drug 1 on the 5'-C3 nucleotide, while the rest of the molecule extends onto the 5'-AAT sequence. The structural evidence for sequence preferential binding at 5'CAAT rather than 5'AATT suggests this reflects an attempt on the part of the sterically demanding inward directed sulfur of the thiazole to minimize compression by moving part of the molecule to the somewhat wider CG base site. The lack of evidence for a 2:1 drug:DNA complex, in contrast to distamycin, is in accord with this interpretation. The lexitropsin 1 was found to be in an exchange between the equivalent 5'-CAAT sites at a rate of approximately 35S-1 with a delta G degree of 65 +/- 5 kJ mol-1 at 303 K. The experimental data suggests a slide-swing mechanism for this exchange process.

摘要

通过1:1复合物的非交换和亚氨基质子核磁共振共振,研究了与十脱氧核糖核苷酸d-[CGCAATTGCG]2结合的含噻唑的双螺旋霉素类似物1的位置、取向和动力学。使用NOE差异、COSY和NOESY实验,发现lexitropsin(1)位于DNA小沟中5'-CAAT序列处。这是通过配体与小沟A4H2质子之间的分子间NOE得出的结论。NOESY图谱中的NOE交叉相关性证实,1:1复合物中的DNA十聚体双链体保持类似于游离十聚体的右手B构象。对非交换和可交换质子核磁共振共振的实验表明,药物1的N-甲酰氨基末端位于5'-C3核苷酸上,而分子的其余部分延伸到5'-AAT序列。在5'CAAT而非5'AATT处序列优先结合的结构证据表明,这反映了噻唑的空间需求向内的硫试图通过将分子的一部分移动到稍宽的CG碱基位点来最小化压缩。与双螺旋霉素相比,缺乏2:1药物:DNA复合物的证据与这种解释一致。发现lexitropsin 1在等效的5'-CAAT位点之间以约35S-1的速率交换,在303 K时ΔG°为65±5 kJ mol-1。实验数据表明该交换过程存在滑动-摆动机制。

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