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放线菌素A3与小DNA双链体相互作用的核磁共振研究I。

NMR studies of the interaction of chromomycin A3 with small DNA duplexes I.

作者信息

Keniry M A, Brown S C, Berman E, Shafer R H

出版信息

Biochemistry. 1987 Feb 24;26(4):1058-67. doi: 10.1021/bi00378a012.

Abstract

1H and 31P NMR spectral analysis of a chromomycin/d(ATGCAT)2 complex provides strong evidence for a nonintercalative mode of drug binding. Investigation of the imino proton region of the duplex suggests a protection of one of the two guanine imino protons from fast exchange with the bulk water up to at least 45 degrees C by the drug. Subsequent one-dimensional nuclear Overhauser enhancement experiments place the exchangeable chromomycin chromophoric hydroxyl proton less than 0.45 nm from this guanine imino proton and the chromophore 7-methyl less than 0.45 from the internal thymine 6-proton and/or the guanine 8-proton. 1H two-dimensional NMR reveals that the duplex retains a right-handed B conformation but there are distortions at the TGC region of one chain and large deviations in the chemical shift of protons relative to the uncomplexed duplex in the other chain in the same TGC region. The data suggest that the chromomycin chromophore is oriented such that the hydrophilic side of the ring system is proximal to the helix center in the major groove near the TG region while the aromatic side of the ring is oriented away from the helix but is partially protected from the solvent by the aliphatic chain, which bends back over the two aromatic protons. Changes in the 31P spectrum of the duplex on binding of the drug are different from the effect of either actinomycin or netropsin on nucleic acid fragments.

摘要

对放线菌素与d(ATGCAT)2复合物进行的1H和31P核磁共振光谱分析为药物结合的非嵌入模式提供了有力证据。对双链体亚氨基质子区域的研究表明,药物可保护两个鸟嘌呤亚氨基质子中的一个,使其在至少45摄氏度时不会与大量水快速交换。随后的一维核Overhauser增强实验表明,可交换的放线菌素发色团羟基质子与该鸟嘌呤亚氨基质子的距离小于0.45纳米,发色团的7-甲基与内部胸腺嘧啶6-质子和/或鸟嘌呤8-质子的距离小于0.45纳米。1H二维核磁共振显示,双链体保留了右手B构象,但一条链的TGC区域存在扭曲,且在同一TGC区域,另一条链中质子的化学位移相对于未复合双链体有较大偏差。数据表明,放线菌素发色团的取向使得环系统的亲水侧在TG区域附近的大沟中靠近螺旋中心,而环的芳香侧则远离螺旋,但被脂肪链部分保护免受溶剂影响,脂肪链向后弯曲覆盖两个芳香质子。药物结合后双链体31P光谱的变化不同于放线菌素或纺锤菌素对核酸片段的影响。

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