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A-序列和(+)-CC-1065诱导的DNA弯曲。使用非变性凝胶分析、羟基自由基足迹法和高场核磁共振对结构特征进行比较。

A-tract and (+)-CC-1065-induced bending of DNA. Comparison of structural features using non-denaturing gel analysis, hydroxyl-radical footprinting, and high-field NMR.

作者信息

Sun D, Lin C H, Hurley L H

机构信息

Drug Dynamics Institute, College of Pharmacy, University of Texas, Austin 78712.

出版信息

Biochemistry. 1993 May 4;32(17):4487-95. doi: 10.1021/bi00068a003.

Abstract

(+)-CC-1065 is a biologically potent DNA-reactive antitumor antibiotic produced by Streptomyces zelensis. In a previous study we have reported that (+)-CC-1065 produces bending of DNA that has similarities to that intrinsically associated with A-tracts [Lin, C. H., Sun, D., & Hurley, L. H. (1991) Chem. Res. Toxicol, 4, 21-26]. In this article we provide evidence using a combination of non-denaturing gel analysis, hydroxyl-radical footprinting, and high-field NMR for both distinctions between the two types of bends and the importance of junctions in both types of bends. For A-tracts we demonstrate that the locus of bending is at the center of an A-tract and that upon modification of the 3' adenine with (+)-CC-1065 this locus is moved less than 1 base pair to the 3' side, and the bending magnitude is significantly increased. For drug bonding sequences such as 5'-AGTTA* or 5'-GATTA* (where * denotes the drug bonding site), the locus of bending is found to be between the two thymines, and the bending is focused over a 2-base-pair sequence rather than a 5-base-pair sequence, as is the case for the A-tract. An important distinction between an A-tract intrinsic bend and a (+)-CC-1065-induced bend is the effect of temperature. While, as shown previously, the magnitude of A-tract bending increases with decrease in temperature, for drug-induced bending of 5'-AGTTA* the bending magnitude increases with increased temperature.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

(+)-CC-1065是一种由泽链霉菌产生的具有生物活性的DNA反应性抗肿瘤抗生素。在之前的一项研究中,我们报道(+)-CC-1065会使DNA发生弯曲,这种弯曲与A序列内在相关的弯曲相似[林,C.H.,孙,D.,& 赫尔利,L.H.(1991年)《化学研究毒理学》,4,21 - 26]。在本文中,我们结合非变性凝胶分析、羟基自由基足迹法和高场核磁共振,提供了两种弯曲类型之间差异以及两种弯曲类型中连接点重要性的证据。对于A序列,我们证明弯曲位点位于A序列的中心,并且当用(+)-CC-1065修饰3'腺嘌呤时,该位点向3'侧移动不到1个碱基对,且弯曲幅度显著增加。对于药物结合序列,如5'-AGTTA或5'-GATTA(其中表示药物结合位点),发现弯曲位点位于两个胸腺嘧啶之间,并且弯曲集中在一个2碱基对的序列上,而不像A序列那样集中在一个5碱基对的序列上。A序列固有弯曲和(+)-CC-1065诱导弯曲之间的一个重要区别是温度的影响。如先前所示,A序列弯曲幅度随温度降低而增加,而对于5'-AGTTA的药物诱导弯曲,弯曲幅度随温度升高而增加。(摘要截于250字)

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