首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Studies on DNA-cleaving agents: computer modeling analysis of the mechanism of activation and cleavage of dynemicin-oligonucleotide complexes.
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Studies on DNA-cleaving agents: computer modeling analysis of the mechanism of activation and cleavage of dynemicin-oligonucleotide complexes.

机译:DNA裂解剂的研究:达尼霉素-寡核苷酸复合物激活和裂解机理的计算机模型分析。

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摘要

Dynemicin A is a recently identified antitumor antibiotic. Upon activation, dynemicin is reported to cause double-stranded cleavage of DNA, putatively through the intermediacy of a diradical. Computer modeling of this activation and cleavage process is described herein as part of an effort to establish a structural hypothesis for this mechanistic sequence and for the design of simple analogues. Intercalation complexes of duplex dodecamers [d(CGCGAATTCGCG)]2 and [d(GC)6]2 with both enantiomers of dynemicin and of all related mechanistic intermediates are evaluated. Examination of these structures shows that cycloaromatization of dynemicin to a diradical intermediate results in the rotation of the diradical-forming subunit with respect to the intercalation plane that is of an opposite sense for the two dynemicin enantiomers. In addition, the activation of the (2S) enantiomer of dynemicin occurs by a less restricted approach trajectory than the corresponding (2R) enantiomer. In all complexes, the 5'-3' strand is at least 1 A closer than the 3'-5' strand to the diyl intermediate. As a result, complexes are produced in which the diyl moiety is aligned along [(2S)] or across [(2R)] the minor groove, leading to different predictions for the selectivity of radical-initiated, oxidative lesion of DNA. Molecular dynamics simulations are found to support these predictions, including the 3-base-pair offset cleavage reported for dynemicin.
机译:Dynemicin A是最近发现的抗肿瘤抗生素。据报道,在激活后,达尼霉素可能通过双自由基的中介引起DNA的双链切割。在此描述该激活和切割过程的计算机模型,作为建立针对该机械序列和用于设计简单类似物的结构假设的努力的一部分。评价了双十二聚体[d(CGCGAATTCGCG)] 2和[d(GC)6] 2与达尼米松的对映异构体和所有相关的机械中间体的插入配合物。对这些结构的检查表明,将达尼霉素环芳化成双自由基中间体导致形成双自由基的亚基相对于插入平面旋转,这对于两种达尼霉素对映体而言是相反的意思。另外,与相应的(2R)对映异构体相比,达尼米星的(2S)对映异构体的活化通过更少的接近轨迹发生。在所有复合物中,5'-3'链比3'-5'链与二基中间体的距离至少近1A。结果,产生了其中二基部分沿[(2S)]或横跨[(2R)]小沟排列的复合物,导致对自由基引发的DNA氧化损伤选择性的不同预测。发现分子动力学模拟可以支持这些预测,包括有关迪尼米星的3个碱基对的错位切割。

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