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一项关于含有源自偏端霉素-吡咯共轭物的链间交联的[d(CGCGAATTCGCG)]2的核磁共振研究。

An NMR study of [d(CGCGAATTCGCG)]2 containing an interstrand cross-link derived from a distamycin-pyrrole conjugate.

作者信息

Fagan P A, Spielmann H P, Sigurdsson S, Rink S M, Hopkins P B, Wemmer D E

机构信息

Structural Biology Division, Lawrence Berkeley National Laboratory, Berkeley, CA 94720, USA.

出版信息

Nucleic Acids Res. 1996 Apr 15;24(8):1566-73. doi: 10.1093/nar/24.8.1566.

Abstract

Minor groove binding compounds related to distamycin A bind DNA with high sequence selectivity, recognizing sites which contain various combinations of A.T and G.C base pairs. These molecules have the potential to deliver cross-linking agents to the minor groove of a target DNA sequence. We have studied the covalent DNA-DNA cross-linked complex of 2,3- bis(hydroxymethyl)pyrrole-distamycin and [d(CGCGAATTCGCG)]2. The alkylating pyrrole design is based on the pharmacophore of mitomycin C and is similar in substructure to another important class of natural products, the oxidatively activated pyrrolizidine alkaloids. Ligand-DNA NOEs confirm that the tri(pyrrole-carboxamide) unit of the ligand is bound in the minor groove of the central A+T tract. Unexpectedly, it is shifted by 1 bp with respect to the distamycin A binding site on this DNA sequence. The cross-link bridges the 2-amino position of two guanine residues, G4 and G22. The C3.G22 and G4.C21 base pairs exhibit Watson-Crick base pairing, with some local distortion, as evidenced by unusual intensities observed for DNA-DNA NOE cross-peaks. The model is compared with a related structure of a cross-linked mitomycin C:DNA complex.

摘要

与偏端霉素A相关的小沟结合化合物能以高序列选择性结合DNA,识别包含A.T和G.C碱基对各种组合的位点。这些分子有潜力将交联剂递送至目标DNA序列的小沟。我们研究了2,3-双(羟甲基)吡咯-偏端霉素与[d(CGCGAATTCGCG)]2形成的共价DNA-DNA交联复合物。烷基化吡咯的设计基于丝裂霉素C的药效基团,其亚结构与另一类重要的天然产物——氧化活化的吡咯里西啶生物碱相似。配体-DNA核Overhauser效应(NOE)证实,配体的三(吡咯-甲酰胺)单元结合在中央A+T区域的小沟中。出乎意料的是,相对于该DNA序列上偏端霉素A的结合位点,它偏移了1个碱基对。交联连接了两个鸟嘌呤残基G4和G22的2-氨基位置。C3.G22和G4.C21碱基对呈现沃森-克里克碱基配对,伴有一些局部扭曲,DNA-DNA NOE交叉峰的异常强度证明了这一点。该模型与交联的丝裂霉素C:DNA复合物的相关结构进行了比较。

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