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Inhibition of DNA–Topoisomerase I by Acylated Triterpene Saponins from Pittosporum angustifolium Lodd.

机译:Pittosporum angustifolium Lodd的酰化三萜皂苷对DNA-拓扑异构酶I的抑制作用。

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Previous phytochemical investigation of the leaves and seeds of Pittosporum angustifolium Lodd. led to the isolation and structural elucidation of polyphenols and triterpene saponins. Evaluation for cytotoxicity of isolated saponins revealed that the predominant structural feature for a cytotoxic activity are acyl substituents at the oleanane aglycon backbone. The present work reports the results of a screening of 10 selected acylated saponins for their potential to inhibit the human DNA-topoisomerase I, giving rise to IC50 values in a range of 2.8–46.5?μM. To clarify the mode of observed cytotoxic action and, moreover, to distinguish from a pure surfactant effect which is commonly accompanied with saponins, these results indicate an involvement of the topoisomerase I and its role as a possible target structure for a cytotoxic activity. In addition, computational predictions of the fitting of saponins to the topoisomerase I–DNA complex, indicate a similar binding mode to that of clinically used topoisomerase I inhibitors.Graphical AbstractTen acylated triterpene saponins from Pittosporum angustifolium were investigated for their potential to inhibit the human DNA-topoisomerase I and computational predictions of the fitting of saponins to the topoisomerase I–DNA complex were carried out.
机译:先前对Pittosporum angustifolium Lodd的叶子和种子的植物化学研究。导致了多酚和三萜皂苷的分离和结构解析。对分离的皂苷的细胞毒性的评价表明,具有细胞毒性活性的主要结构特征是在齐墩果烷苷元骨架上的酰基取代基。本工作报告了对10种选定的酰化皂苷抑制人DNA拓扑异构酶I潜力的筛选结果,IC50值范围为2.8–46.5?M。为了阐明观察到的细胞毒性作用的方式,并且与通常与皂苷伴随的纯表面活性剂作用区分开,这些结果表明拓扑异构酶I的参与及其作为细胞毒性活性的可能靶结构的作用。此外,对皂苷与拓扑异构酶I–DNA复合物的适合度的计算预测表明与临床使用的拓扑异构酶I抑制剂具有相似的结合方式。图形摘要研究了来自Pittosporum angustifolium的十种酰基化三萜皂苷具有抑制人类DNA的潜力。进行了拓扑异构酶I和皂苷与拓扑异构酶I DNA配合物拟合的计算预测。

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