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Comparative analysis of topoisomerase IB inhibition and DNA intercalation by flavonoids and similar compounds: structural determinates of activity

机译:类黄酮和类似化合物对拓扑异构酶IB抑制和DNA嵌入的比较分析:活性的结构决定性

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摘要

Flavonoids and other polyphenolic compounds have been shown to inhibit human topoisomerase IB (topo I) through both inhibition of relaxation activity and through stabilization of the cleavable complex (poisoning). Some flavonoids have also been shown to intercalate DNA, and an association of topoisomerase inhibition with intercalation has been noted. We surveyed 34 polyphenolic compounds, primarily flavonoid glycones and aglycones, for their ability to inhibit topo I and to intercalate DNA using an in vitro gel electrophoresis method. We show that the most potent topo I poisons are the flavones and flavonols, and that these generally, but not always, are found to be DNA intercalators. There was no clear correlation, however, of topo-I-poisoning activity with the degree of DNA unwinding. Surprisingly, both DNA intercalation and topo I poisoning were shown to occur with some flavone glycones, including the C-glycosylflavone orientin. Inhibition of relaxation activity by flavonoids was found to be difficult to quantify and was most likely to be due to non-specific inhibition through flavonoid aggregation. As part of a structure–activity analysis, we also investigated the acid–base chemistry of flavonoids and determined that many flavonoids show acid–base activity with a pKa in the physiological pH region. For this reason, subtle pH changes can have significant effects on solution activity of flavonoids and their concomitant biological activity. In addition, these effects may be complicated by pH-dependent aggregation and oxidative degradation. Finally, we develop a simple model for the intercalation of flavonoids into DNA and discuss possible consequences of intercalation and topoisomerase inhibition on a number of cellular processes.
机译:黄酮类化合物和其他多酚化合物已显示出通过抑制松弛活性和通过稳定可裂解复合物(中毒)来抑制人拓扑异构酶IB(拓扑I)。还显示了某些类黄酮可嵌入DNA,并且已注意到拓扑异构酶抑制与嵌入相关。我们使用体外凝胶电泳方法调查了34种多酚化合物(主要是类黄酮糖苷和糖苷配基)的抑制topo I和插入DNA的能力。我们显示最有效的topo I毒物是黄酮类和黄酮醇类,而且通常但并非总是发现这些是DNA嵌入剂。然而,topo-I中毒活性与DNA解旋程度没有明显的相关性。出人意料的是,DNA插入和topo I中毒都显示出与某些黄酮配糖类同时发生,包括C-糖基黄酮Orientin。发现黄酮类化合物对松弛活性的抑制作用难以量化,并且最有可能是由于通过类黄酮聚集引起的非特异性抑制。作为结构活性分析的一部分,我们还研究了类黄酮的酸碱化学性质,并确定许多黄酮在生理pH范围内均显示具有pKa的酸碱活性。因此,pH值的细微变化会对类黄酮的溶液活性及其伴随的生物活性产生重大影响。此外,pH依赖的聚集和氧化降解可能会使这些效应复杂化。最后,我们开发了一种将黄酮类化合物插入DNA的简单模型,并讨论了在许多细胞过程中插入和拓扑异构酶抑制的可能后果。

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