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关于放线菌素与无法形成Hoogsteen碱基对的DNA结合的足迹滴定研究。

Footprinting titration studies on the binding of echinomycin to DNA incapable of forming Hoogsteen base pairs.

作者信息

Sayers E W, Waring M J

机构信息

Department of Pharmacology, University of Cambridge, England.

出版信息

Biochemistry. 1993 Sep 7;32(35):9094-107. doi: 10.1021/bi00086a014.

Abstract

In order to investigate the possible importance of Hoogsteen base pairing to the DNA-binding ability of echinomycin, quantitative DNase I footprinting has been performed. The substrate was the tyrT DNA restriction fragment, either "native" or substituted with one of the purine analogs 2'-deoxy-7-deazaadenosine and 2'-deoxy-7-deazaguanosine in both strands. The modified DNA species were prepared by PCR and selectively labeled at the 5' terminus of one strand (usually the upper "Watson" strand) with [32P]ATP and polynucleotide kinase. Proper incorporation of the analog nucleotides was verified by Maxam-Gilbert G- and C-sequencing reactions as well as exposure to osmium tetroxide and diethyl pyrocarbonate. OsO4 was found to react strongly with the 7-deaza nucleotides, providing a good check of faithful incorporation. The previously observed echinomycin-induced hyperreactivity of purines toward diethyl pyrocarbonate was eliminated by incorporating the appropriate 7-deazapurine. The DNase I footprinting titration studies greatly refined the existing knowledge of the DNA-binding characteristics of echinomycin, as they revealed five general types of concentration-dependent behavior at single-bond resolution. Estimates of microscopic binding constants at individual DNA binding sites were obtained by measuring the antibiotic concentration which produced a half-maximal effect on the concentration of a given DNase I cleavage product. All binding sites contained one or more CpG steps, and all CpG steps analyzed formed part of a binding site for echinomycin. No consistent differences in the estimated binding constants for these sites were observed by comparing normal and modified DNAs, indicating that the abolition of formal Hoogsteen pairs did not significantly alter the thermodynamics of echinomycin-DNA interaction. The lack of any detectable decrease in binding constants for critical sites in the 7-deazapurine-substituted DNAs argues against any anti-syn conformational transition of purine nucleosides occurring in association with the bis-intercalative complex formation.

摘要

为了研究霍格施泰因碱基配对对放线菌素DNA结合能力的潜在重要性,我们进行了定量DNase I足迹分析。底物是tyrT DNA限制片段,要么是“天然的”,要么是两条链都被嘌呤类似物2'-脱氧-7-脱氮腺苷和2'-脱氧-7-脱氮鸟苷之一取代。通过PCR制备修饰的DNA种类,并使用[32P]ATP和多核苷酸激酶在一条链(通常是上部的“沃森”链)的5'末端进行选择性标记。通过Maxam-Gilbert G和C测序反应以及暴露于四氧化锇和焦碳酸二乙酯来验证类似核苷酸的正确掺入。发现OsO4与7-脱氮核苷酸强烈反应,这是对忠实掺入的良好检查。通过掺入适当的7-脱氮嘌呤,消除了先前观察到的放线菌素诱导的嘌呤对焦碳酸二乙酯的高反应性。DNase I足迹滴定研究极大地完善了关于放线菌素DNA结合特性的现有知识,因为它们在单键分辨率下揭示了五种一般类型的浓度依赖性行为。通过测量对给定DNase I切割产物浓度产生半最大效应的抗生素浓度,获得了各个DNA结合位点的微观结合常数估计值。所有结合位点都包含一个或多个CpG步骤,并且分析的所有CpG步骤都构成了放线菌素的一个结合位点的一部分。通过比较正常DNA和修饰DNA,未观察到这些位点的估计结合常数有一致的差异,这表明正式的霍格施泰因碱基对的消除并未显著改变放线菌素与DNA相互作用的热力学。7-脱氮嘌呤取代的DNA中关键位点的结合常数没有任何可检测到的降低,这与在双插入复合物形成过程中嘌呤核苷发生任何反式-顺式构象转变的观点相矛盾。

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