首页> 美国卫生研究院文献>Nucleic Acids Research >Anthracycline antibiotic arugomycin binds in both grooves of the DNA helix simultaneously: an NMR and molecular modelling study.
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Anthracycline antibiotic arugomycin binds in both grooves of the DNA helix simultaneously: an NMR and molecular modelling study.

机译:蒽环类抗生素抗生素霉素同时结合在DNA螺旋的两个凹槽中:一项NMR和分子模型研究。

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摘要

Perturbations to the 1H and 31P chemical shifts of DNA resonances together with twenty-four intermolecular nuclear Overhauser effects show that the anthracycline antibiotic arugomycin intercalates between the basepairs of the hexamer duplex d(5'-GCATGC)2 at the 5'-CpA and 5'-TpG binding sites. In the complex two drug molecules are bound per duplex with full retention of the dyad symmetry. Arugomycin adopts a threaded binding orientation with chains of sugars positioned in both the major and minor groove of the helix simultaneously. The complex is stabilized by hydrogen bonding, electrostatic and van der Waals interactions principally in the major groove and involving substituents on the rigidly oriented bicycloamino-glucose sugar of the antibiotic. A specific hydrogen bond is identified between the C2'-hydroxyl and the guanine N7 at the intercalation site. Together, interactions in the major groove appear to account for the intercalation specificity of arugomycin that requires both a guanine and thymine at the intercalation site. We are unable to identify any sequence specific interactions between the minor groove and the arugarose sugar (S1) which binds only weakly, through van der Walls contacts, over the d(GCA).d(TGC) trinucleotide sequence. The data indicate that the sugar chains of arugomycin are flexible and play little part in the interaction of the antibiotic with DNA. The intensity of sequential internucleotide NOEs identifies the intercalation site as being assymmetric. A family of conformers computed using restrained energy minimisation and molecular dynamics indicate that basepair buckling is a feature of the anthracycline intercalation site that may serve to maximise intermolecular van der Waals interactions by wrapping the basepairs around the antibiotic chromophore.
机译:DNA共振对1H和31P化学位移的扰动以及24种分子间核Overhauser效应表明,蒽环类抗生素阿霉素在5'-CpA和5的六聚体双链体d(5'-GCATGC)2的碱基对之间插入。 -TpG结合位点。在复合物中,每个双链体结合了两个药物分子,并完全保留了二联体对称性。阿霉素采用螺纹结合方向,糖链同时位于螺旋的主要和次要凹槽中。该复合物主要通过在主要槽中的氢键,静电和范德华相互作用来稳定,并且涉及抗生素的刚性取向的双环氨基-葡萄糖糖上的取代基。在插入位置的C2'-羟基和鸟嘌呤N7之间鉴定出特定的氢键。在一起,在主要凹槽中的相互作用似乎解释了阿霉素的插入特异性,其在插入部位需要鸟嘌呤和胸腺嘧啶。我们无法确定小沟与金葡糖(S1)之间的任何序列特异性相互作用,而后者仅通过范德华斯接触在d(GCA).d(TGC)三核苷酸序列上弱结合。数据表明,阿霉素的糖链具有柔韧性,在抗生素与DNA的相互作用中几乎没有作用。顺序核苷酸间NOE的强度将插入位点标识为不对称。使用限制的能量最小化和分子动力学计算出的一系列构象异构体表明,碱基对屈曲是蒽环类插入位点的特征,该位点可以通过将碱基对包裹在抗生素发色团上来最大化分子间范德华相互作用。

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