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卟啉与人类端粒结合的结构基础。

Structural basis for binding of porphyrin to human telomeres.

作者信息

Parkinson Gary N, Ghosh Ragini, Neidle Stephen

机构信息

CRUK Biomolecular Structure Group, The School of Pharmacy, University of London, 29-39 Brunswick Square, London WC1N 1AX, United Kingdom.

出版信息

Biochemistry. 2007 Mar 6;46(9):2390-7. doi: 10.1021/bi062244n. Epub 2007 Feb 3.

DOI:10.1021/bi062244n
PMID:17274602
Abstract

Maintenance of telomere integrity is a hallmark of human cancer, and the single-stranded 3' ends of telomeric DNA are targets for small-molecule anticancer therapies. We report here the crystal structure of a bimolecular human telomeric quadruplex, of the sequence d(TAGGGTTAGGG), in a complex with the quadruplex-binding ligand 5,10,15,20-tetrakis(N-methyl-4-pyridyl)porphyrin (TMPyP4) to a resolution of 2.09 A. The DNA quadruplex topology is parallel-stranded with external double-chain-reversal propeller loops, consistent with previous structural determinations. The porphyrin molecules bind by stacking onto the TTA nucleotides, either as part of the external loop structure or at the 5' region of the stacked quadruplex. This involves stacked on hydrogen-bonded base pairs, formed from those nucleotides not involved in the formation of G-tetrads, and there are thus no direct ligand interactions with G-tetrads. This is in accord with the relative nonselectivity by TMPyP4 for quadruplex DNAs compared to duplex DNA. Porphyrin binding is achieved by remodeling of loops compared to the ligand-free structures. Implications for the design of quadruplex-binding ligands are discussed, together with a model for the formation of anaphase bridges, which are observed following cellular treatment with TMPyP4.

摘要

维持端粒完整性是人类癌症的一个标志,端粒DNA的单链3'末端是小分子抗癌疗法的靶点。我们在此报告了序列为d(TAGGGTTAGGG)的双分子人端粒四链体与四链体结合配体5,10,15,20-四( N-甲基-4-吡啶基)卟啉( TMPyP4)复合物的晶体结构,分辨率为2.09 Å。DNA四链体拓扑结构为平行链,带有外部双链反向螺旋环,与先前的结构测定结果一致。卟啉分子通过堆积在TTA核苷酸上结合,这些核苷酸要么作为外部环结构的一部分,要么在堆积四链体的5'区域。这涉及堆积在由那些不参与形成G-四联体的核苷酸形成的氢键碱基对上,因此配体与G-四联体没有直接相互作用。这与TMPyP4相对于双链DNA对四链体DNA的相对非选择性一致。与无配体结构相比,卟啉结合是通过环的重塑实现的。讨论了四链体结合配体设计的意义,以及用TMPyP4处理细胞后观察到的后期桥形成模型。

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