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几种新型蒽环类抗肿瘤抗生素的脱氧核糖核酸结合研究。与阿霉素相比,马塞洛霉素及其类似物的序列偏好和构效关系。

Deoxyribonucleic acid binding studies on several new anthracycline antitumor antibiotics. Sequence preference and structure--activity relationships of marcellomycin and its analogues as compared to adriamycin.

作者信息

DuVernay V H, Pachter J A, Crooke S T

出版信息

Biochemistry. 1979 Sep 4;18(18):4024-30. doi: 10.1021/bi00585a028.

Abstract

The deoxyribonucleic acid (DNA) binding characteristics of adriamycin and several new anthracycline glycosides, including marcellomycin, aclacinomycin, rudolfomycin, musettamycin, and pyrromycin, have been studied. The fluorescence spectra were determined for all six anthracyclines, and the fluorescence quenching effects caused by interactions with the natural DNAs poly(dAdT)--poly(dAdT) and poly(dGdC) were characterized. Binding parameters were determined by Scatchard analyses of results obtained by spectrofluorometric titrations of anthracyclines with DNA. Consistent with earlier structure--activity relationship studies of nucleic acid synthesis inhibitory effects, the results demonstrate a correlation between the length of the glycosidic side chain and DNA binding affinity. In addition, the sugar residue 2-deoxyfucose appears to confer greater DNA binding ability than do the sugars rednosamine and cinerulose when present in the terminal position of the glycosidic side chain, also in agreement with earlier studies. The sequence preference of anthracycline--DNA interaction has been examined by using DNAs of varying GC content, including the naturally occurring calf thymus DNA (43% GC), Clostridium perfringens DNA (28% GC), and Micrococcus luteus DNA (72% GC) and the synthetic double-stranded copolymers poly(dGdC)--poly(dGdC) and poly(dAdT)--POLY(DAdT). The results demonstrate that although adriamycin shows an absolute requirement for GC sequences for DNA binding, marcellomycin and its analogues showed no such sequence requirement. Furthermore, an AT preference for DNA binding was demonstrated with marcellomycin and its analogues.

摘要

已对阿霉素及几种新的蒽环类糖苷(包括马塞洛霉素、阿克拉霉素、鲁道夫霉素、穆塞他霉素和吡咯霉素)的脱氧核糖核酸(DNA)结合特性进行了研究。测定了所有六种蒽环类药物的荧光光谱,并对与天然DNA聚(dAdT)-聚(dAdT)和聚(dGdC)相互作用引起的荧光猝灭效应进行了表征。通过对蒽环类药物与DNA进行荧光光谱滴定得到的结果进行Scatchard分析来确定结合参数。与早期关于核酸合成抑制作用的构效关系研究一致,结果表明糖苷侧链长度与DNA结合亲和力之间存在相关性。此外,当糖苷侧链末端存在糖残基2-脱氧岩藻糖时,其赋予的DNA结合能力似乎比红霉胺和cinerulose糖更强,这也与早期研究一致。通过使用不同GC含量的DNA,包括天然的小牛胸腺DNA(43% GC)、产气荚膜梭菌DNA(28% GC)和藤黄微球菌DNA(72% GC)以及合成双链共聚物聚(dGdC)-聚(dGdC)和聚(dAdT)-聚(dAdT),研究了蒽环类药物与DNA相互作用的序列偏好性。结果表明,虽然阿霉素显示出对DNA结合的GC序列有绝对要求,但马塞洛霉素及其类似物则没有这样的序列要求。此外,马塞洛霉素及其类似物对DNA结合表现出AT偏好性。

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