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托马霉素-DNA加合物的稳态荧光和分子模拟研究。

Steady-state fluorescence and molecular-modeling studies of tomaymycin-DNA adducts.

作者信息

Barkley M D, Thomas T J, Maskos K, Remers W A

机构信息

Department of Chemistry, Louisiana State University, Baton Rouge 70803.

出版信息

Biochemistry. 1991 May 7;30(18):4421-31. doi: 10.1021/bi00232a008.

Abstract

The interaction of tomaymycin and 8-O-methyltomaymycin with calf thymus DNA was studied by steady-state fluorescence techniques. The 8-phenolic proton of tomaymycin has a pK = 8.0, and the phenolate anion is essentially nonfluorescent. However, the fluorescence of the DNA adduct does not decrease until pH greater than 10.5, when the DNA double helix denatures. Acrylamide quenches the fluorescence of the free antibiotic with a quenching rate constant kq = 7 x 10(9) M-1 s-1. In DNA adducts, the quenching rate constant is reduced about 50-fold, indicating that the aromatic ring of the drug is shielded from the solvent. The four possible binding modes of the antibiotics were modeled on a 6-mer duplex by molecular mechanics calculations in the absence and presence of water and counterions. The modeling studies show that the antibiotic is buried in the minor groove in all binding modes, with the 8-substituent pointing away from the DNA core. Three or five waters are displaced from the minor groove, depending on the orientation of the drug on the DNA.

摘要

采用稳态荧光技术研究了托马霉素和8 - O - 甲基托马霉素与小牛胸腺DNA的相互作用。托马霉素的8 - 酚羟基质子的pK = 8.0,酚盐阴离子基本无荧光。然而,直到pH大于10.5时DNA双螺旋变性,DNA加合物的荧光才会降低。丙烯酰胺以猝灭速率常数kq = 7×10⁹ M⁻¹ s⁻¹猝灭游离抗生素的荧光。在DNA加合物中,猝灭速率常数降低约50倍,表明药物的芳香环被溶剂屏蔽。通过分子力学计算,在无水和有水及抗衡离子存在的情况下,对6聚体双链体模拟了抗生素的四种可能结合模式。模拟研究表明,在所有结合模式中抗生素都埋入小沟,8 - 取代基指向远离DNA核心的方向。根据药物在DNA上的取向,从小沟中置换出3个或5个水分子。

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