Evans T, Efstratiadis A
J Biol Chem. 1986 Nov 5;261(31):14771-80.
Using cloned (dG-dA)n X (dC-dT)n DNA duplexes [GA)n) as models of homopurine-homopyrimidine S1-hypersensitive sites, we show that cleavage of the alternate (non-B, non-Z) DNA structure by S1 nuclease is length-dependent, in both supercoiled and linear forms, which are similar because of the identity of their nicking profiles. However, the length of flanking sequences, the presence of borders, and the DNA topology affect the equilibrium between the alternate structure and B-DNA. The B form of (GA)38 has a 10.4-base pair helical repeat, but the two phosphodiester backbones have different conformations (heteronomous DNA with a dinucleotide repeat unit). Extension experiments reveal that the alternate structure is also heteronomous, in agreement with the nicking patterns generated by S1 and mung bean nucleases and by venom phosphodiesterase. Sensitivity to the latter enzyme at pH 9.0 indicates that the alternate DNA does not appear only in the low pH of the S1 nuclease reaction. Moreover, Hoogsteen G-CH+ base-pairing does not seem to be a prerequisite for the appearance of sensitivity because S1 still recognizes the structure even when all Gs are methylated at N-7. This is consistent with the results of chemical probing of the structure using dimethyl sulfate and diethyl pyrocarbonate at various pH values, which show absence of protection at guanine N-7. However, diethyl pyrocarbonate treatment at low pH results in hyper-reactivity of A residues.
使用克隆的(dG-dA)n×(dC-dT)n DNA双链体[(GA)n]作为同型嘌呤-同型嘧啶S1超敏位点的模型,我们发现,在超螺旋和线性形式中,S1核酸酶对交替(非B型、非Z型)DNA结构的切割具有长度依赖性,由于它们的切口图谱相同,这两种形式相似。然而,侧翼序列的长度、边界的存在以及DNA拓扑结构会影响交替结构与B-DNA之间的平衡。(GA)38的B型具有10.4个碱基对的螺旋重复,但两条磷酸二酯主链具有不同的构象(具有二核苷酸重复单元的异源DNA)。延伸实验表明,交替结构也是异源的,这与S1核酸酶、绿豆核酸酶和蛇毒磷酸二酯酶产生的切口模式一致。在pH 9.0时对后一种酶的敏感性表明,交替DNA并非仅出现在S1核酸酶反应的低pH环境中。此外,Hoogsteen G-CH+碱基配对似乎不是出现敏感性的先决条件,因为即使所有鸟嘌呤在N-7位甲基化,S1仍能识别该结构。这与在不同pH值下使用硫酸二甲酯和焦碳酸二乙酯对该结构进行化学探测的结果一致,这些结果表明鸟嘌呤N-7位没有保护作用。然而,在低pH下用焦碳酸二乙酯处理会导致腺嘌呤残基的高反应性。