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Topoisomerase II-mediated site-directed alkylation of DNA by psorospermin and its use in mapping other topoisomerase II poison binding sites

机译:葡精胺介导的拓扑异构酶II介导的DNA定点烷基化及其在定位其他拓扑异构酶II毒物结合位点中的用途

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摘要

Psorospermin is a plant natural product that shows significant in vivo activity against P388 mouse leukemia. The molecular basis for this selectivity is unknown, although psorospermin has been demonstrated to intercalate into DNA and alkylate N7 of guanine. Significantly, the alkylation reactivity of psorospermin at specific sites on DNA increased 25-fold in the presence of topoisomerase II. In addition, psorospermin trapped the topoisomerase II-cleaved complex formation at the same site. These results imply that the efficacy of psorospermin is related to its interaction with the topoisomerase II–DNA complex. Because thermal treatment of (N7 guanine)–DNA adducts leads to DNA strand breakage, we were able to determine the site of alkylation of psorospermin within the topoisomerase II gate site and infer that intercalation takes place at the gate site between base pairs at the +1 and +2 positions. These results provide not only additional mechanistic information on the mode of action of the anticancer agent psorospermin but also structural insights into the design of an additional class of topoisomerase II poisons. Because the alkylation site for psorospermin in the presence of topoisomerase II can be assigned unambiguously and the intercalation site inferred, this drug is a useful probe for other topoisomerase poisons where the sites for interaction are less well defined.
机译:Psorospermin是一种植物天然产物,对P388小鼠白血病表现出显着的体内活性。尽管已经证明了β-rosperpermin可以嵌入鸟嘌呤的DNA和鸟嘌呤的N7中,但这种选择性的分子基础尚不清楚。有意义的是,在拓扑异构酶II的存在下,伪装精蛋白在DNA特定位点的烷基化反应性提高了25倍。此外,Psorospermin在同一位点捕获了拓扑异构酶II切割的复合物形成。这些结果表明,Psorospermin的功效与其与拓扑异构酶II-DNA复合物的相互作用有关。因为对(N7鸟嘌呤)–DNA加合物进行热处理会导致DNA链断裂,所以我们能够确定拓扑异构酶II闸门位点内的过磷酸钙的烷基化位点,并推断插入发生在+碱基对之间的闸门位点1和+2位置。这些结果不仅提供了有关抗癌药Psorospermin作用方式的其他机制信息,而且还提供了对另一类拓扑异构酶II毒物设计的结构见解。因为可以在拓扑异构酶II存在的情况下明确地确定Psorospermin的烷基化位点,并且可以推断出嵌入位点,因此该药物对于其他拓扑异构酶毒物的相互作用位置不太明确,是一种有用的探针。

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