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氨茴霉素与B型DNA共价复合物的分子力学模拟

Molecular mechanics simulations on covalent complexes between anthramycin and B DNA.

作者信息

Rao S N, Singh U C, Kollman P A

出版信息

J Med Chem. 1986 Dec;29(12):2484-92. doi: 10.1021/jm00162a011.

Abstract

We present molecular mechanics simulation of the covalent interactions of the potent antitumor antibiotic belonging to the pyrrolo[1,4]benzodiazepine class, anthramycin, with six deoxydecanucleotides, d(GCGCGCGCGC)2, d(G10) X d(C10), d(GCGCGTGCGC) X d(GCGCACGCGC), d(GCGCGAGCGC) X d(GCGCTCGCGC), d(GGGGGAGGGG) X d(CCCCTCCCCC), and d(GGGGGTGGGG) X d(CCCCACCCCC), in their minor grooves. The complexes are characterized by both a network of hydrogen bonds between the drug and the polynucleotide and good packing interactions. The DNA double helix in these complexes shows very minimal distortion, and interactions of the drug with the decanucleotides seem to be not very sensitive to the sequence variation around the site of complex formation. The conformational features in the complexes obtained are generally consistent with the experimentally derived conclusions by recent NMR and 2-D NOE studies.

摘要

我们展示了属于吡咯并[1,4]苯二氮卓类的强效抗肿瘤抗生素安丝菌素与六种脱氧十聚核苷酸d(GCGCGCGCGC)2、d(G10)×d(C10)、d(GCGCGTGCGC)×d(GCGCACGCGC)、d(GCGCGAGCGC)×d(GCGCTCGCGC)、d(GGGGGAGGGG)×d(CCCCTCCCCC)和d(GGGGGTGGGG)×d(CCCCACCCCC)在其小沟中的共价相互作用的分子力学模拟。这些复合物的特征是药物与多核苷酸之间存在氢键网络以及良好的堆积相互作用。这些复合物中的DNA双螺旋显示出非常小的扭曲,并且药物与十聚核苷酸的相互作用似乎对复合物形成位点周围的序列变化不太敏感。所获得的复合物中的构象特征通常与最近的核磁共振和二维核Overhauser效应研究得出的实验结论一致。

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