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偏端霉素与含AT的DNA八聚体d(ICITACIC)和d(ICATATIC)并列结合的晶体结构。

Crystal structures of the side-by-side binding of distamycin to AT-containing DNA octamers d(ICITACIC) and d(ICATATIC).

作者信息

Chen X, Ramakrishnan B, Sundaralingam M

机构信息

Department of Chemistry, The Ohio State University, Columbus 43210, USA.

出版信息

J Mol Biol. 1997 Apr 18;267(5):1157-70. doi: 10.1006/jmbi.1997.0941.

Abstract

To understand the recognition interactions between AT-containing alternating DNA and minor groove binding drugs, the crystal structures of the side-by-side binding of two distamycin molecules to the DNA octamers d(ICITACIC)2 and d(ICATATIC)2, referred to here as TA and ATAT, respectively, have been determined at 1.6 A and 2.2 A, respectively. Compared to the previous 2:1 all-IC d(ICICICIC)2-distamycin complex, the substitutions of the I x C base-pairs by the A x T base-pairs enable the interactions of the drug with its natural target to be studied. Both complexes assume side-by-side drug binding, isomorphous to the all IC counterpart in the tetragonal space group P4(1)22 (a = b = 28.03 A, c = 58.04 A and a = b = 27.86 A, c = 58.62 A, respectively). The ATAT complex also crystallized in a new polymorphic monoclinic space group C2 (a = 33.38 A, b = 25.33 A, c = 28.11 A and beta = 120.45 degrees) and was solved at 1.9 A resolution. The structures of the three double drug x DNA complexes are very similar, characterized by systematic hydrogen bonding and van der Waals interactions. Each drug hydrogen bonds with the bases of the proximal DNA strand only and stacks with the sugar moiety, while the side-by-side drugs themselves exhibit pyrrole ring-peptide stacking. The pyrrole-peptide interaction is crucial for the side-by-side binding mode of the distamycin/netropsin family of drugs. The purine-pyrimidine alternation is probably responsible for the striking alternation in the helical and backbone conformations. The structures are conserved between the pure IC complex and the AT substituted complexes but further details of the side-by-side binding to DNA are provided by the 1.6 A resolution structure of TA.

摘要

为了解含AT的交替DNA与小沟结合药物之间的识别相互作用,分别在1.6埃和2.2埃的分辨率下测定了两个偏端霉素分子与DNA八聚体d(ICITACIC)2和d(ICATATIC)2(此处分别称为TA和ATAT)并排结合的晶体结构。与之前的2:1全IC d(ICICICIC)2 - 偏端霉素复合物相比,用A×T碱基对取代I×C碱基对能够研究药物与其天然靶点之间的相互作用。两种复合物均呈现并排的药物结合方式,与四方晶系空间群P4(1)22中的全IC对应物同构(分别为a = b = 28.03埃,c = 58.04埃和a = b = 27.86埃,c = 58.62埃)。ATAT复合物还结晶于一个新的多晶型单斜晶系空间群C2(a = 33.38埃,b = 25.33埃,c = 28.11埃,β = 120.45度)并在1.9埃分辨率下解析。三种双药×DNA复合物的结构非常相似,其特征在于系统的氢键和范德华相互作用。每种药物仅与近端DNA链的碱基形成氢键并与糖部分堆积,而并排的药物自身呈现吡咯环 - 肽堆积。吡咯 - 肽相互作用对于偏端霉素/纺锤菌素家族药物的并排结合模式至关重要。嘌呤 - 嘧啶交替可能是螺旋和主链构象显著交替的原因。纯IC复合物和AT取代复合物之间结构保守,但TA的1.6埃分辨率结构提供了与DNA并排结合的更多细节。

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