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[含有对DNA中AT和GC碱基对具有特异性反应中心的合成DNA结合配体]

[Synthetic DNA-bindings ligands containing reaction centers specific for AT- and GC-pairs in DNA].

作者信息

Leĭnsoo T A, Nikolaev V A, Grokhovskiĭ S L, Surovaia A N, Sidorova N Iu, Strel'tsov S A, Zasedatelev A S, Zhuze A L, Gurskiĭ G V

出版信息

Mol Biol (Mosk). 1989 Nov-Dec;23(6):1616-37.

PMID:2561177
Abstract

In the present communication design, synthesis and DNA binding activities of three bis-netropsins and two netropsin analogs containing two N-propylpyrrolecarboxamide fragments linked covalently to peptides Gly-Gly-(analog I) and Val-Val-Val-Gly-Gly-(analog II) are reported. Each bis-netropsin consists of two netropsin-like fragments attached to peptides -Gly-Cys-Gly-NH2 (compound IIIa), H-Gly-Cys-Gly-Gly-Gly-(compound IV) or Gly-Cys-Sar-NH2 (compound IIIb) which are linked symmetrically via S-S bonds. Physico-chemical studies show that each bis-netropsin carries 6 AT-specific reaction centers and covers approximately 10 base pairs upon binding to poly(dA).poly(dT). This indicates that two netropsin-like fragments of the bis-netropsin molecule are implicated in specific interaction with DNA base pairs. The peptide fragments of bis-netropsins IIIa and IV form small beta-sheets containing two-GC-specific reaction centers. The DNase I cleavage patterns of bis-netropsin-DNA complexes visualized by high resolution gel electrophoresis show that the preferred binding sites for bis-netropsins IIIa and IV are identical and contain two runs of three or more AT pairs separated by two GC pairs. Specificity determinants of netropsin analog II binding in the beta-associated dimeric form are identical to those of bis-netropsin IIIa thereby indicating that there is a similarity in the structure of complexes formed by these ligands with DNA. In the monomeric form analog II exhibits binding specificity identical to that of analog I. Replacement of C-terminal glycine residues by sarcosines in the peptide fragments of bis-netropsin IIIa leads to a decrease in the affinity of ligand for DNA.

摘要

本文报道了三种双诺托品以及两种诺托品类似物的设计、合成及其DNA结合活性,这些类似物含有两个与肽Gly-Gly-(类似物I)和Val-Val-Val-Gly-Gly-(类似物II)共价连接的N-丙基吡咯甲酰胺片段。每个双诺托品由两个类似诺托品的片段连接到肽-Gly-Cys-Gly-NH2(化合物IIIa)、H-Gly-Cys-Gly-Gly-Gly-(化合物IV)或Gly-Cys-Sar-NH2(化合物IIIb)组成,这些肽通过S-S键对称连接。物理化学研究表明,每个双诺托品带有6个AT特异性反应中心,与聚(dA)·聚(dT)结合时覆盖约10个碱基对。这表明双诺托品分子的两个类似诺托品的片段参与了与DNA碱基对的特异性相互作用。双诺托品IIIa和IV的肽片段形成含有两个GC特异性反应中心的小β-折叠。通过高分辨率凝胶电泳可视化的双诺托品-DNA复合物的DNase I切割模式表明,双诺托品IIIa和IV的首选结合位点相同,包含两组由两个GC对隔开的三个或更多AT对。诺托品类似物II以β-相关二聚体形式结合的特异性决定因素与双诺托品IIIa相同,从而表明这些配体与DNA形成的复合物结构具有相似性。以单体形式存在时,类似物II表现出与类似物I相同的结合特异性。在双诺托品IIIa的肽片段中用肌氨酸取代C末端甘氨酸残基会导致配体对DNA的亲和力降低。

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