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Etoposide Metabolites Enhance DNA Topoisomerase II Cleavage near Leukemia-Associated MLL Translocation Breakpoints

机译:依托泊苷代谢物增强与白血病相关的MLL易位断点附近的DNA拓扑异构酶II裂解

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摘要

Chromosomal breakage resulting from stabilization of DNA topoisomerase II covalent complexes by epipodophyllotoxins may play a role in the genesis of leukemia-associated MLL gene translocations. We investigated whether etoposide catechol and quinone metabolites can damage the MLL breakpoint cluster region in a DNA topoisomerase Il-dependent manner like the parent drug and the nature of the damage. Cleavage of two DNA substrates containing the normal homologues of five MLL intron 6 translocation breakpoints was examined in vitro upon incubation with human DNA topoisomerase ilct, ATP, and either etoposide, etoposide caliechol, or etoposide quinone. Many of the same cleavage sites were induced by etoposide and by its metabolites, but several unique sites were induced by the metabolites. There was a preference for G(— 1) among the unique sites, which differs from the parent drug. Cleavage at most sites was greater and more heat-stable in the presence of the metabolites compared to etoposide. The MLL translocation breakpoints contained within the substrates were near strong and/or stable cleavage sites. The metabolites induced more cleavage than etoposide at the same sites within a 40 bp double-stranded oligonucleotide containing two of the translocation breakpoints, confirming the results at a subset of the sites. Cleavage assays using the same oligonucleotide substrate in which guanines at several positions were replaced with N7-deaza guanines indicated that the N7 position of guanine is important in metabolite-induced cleavage, possibly suggesting N7-guanine alkylation by etoposide quinone. Not only etoposide, but also its metabolites, enhance DNA topoisomerase II cleavage near MLL translocation breakpoints in in vitro assays. It is possible that etoposide metabolites may be relevant to translocations.
机译:由表鬼臼毒素稳定DNA拓扑异构酶II共价复合物导致的染色体断裂可能在白血病相关的MLL基因易位的发生中起作用。我们调查了依托泊苷儿茶酚和醌代谢物是否可以像亲本药物一样以DNA拓扑异构酶II依赖性方式破坏MLL断点簇区域,以及破坏的性质。在与人DNA拓扑异构酶ilct,ATP和依托泊苷,依托泊苷杯胆碱或依托泊苷醌孵育后,在体外检查了两个含有5个MLL内含子6易位断点的正常同源物的DNA底物的裂解。依托泊苷及其代谢物可诱导许多相同的切割位点,但代谢物可诱导几个独特的位点。在独特位点中存在对G(-1)的偏好,这与母体药物不同。与依托泊苷相比,在存在代谢物的情况下,大多数部位的裂解更大且热稳定性更高。包含在底物中的MLL易位断裂点靠近强和/或稳定的切割位点。在包含两个易位转位点的40 bp双链寡核苷酸中,相同位置的代谢物比依托泊苷诱导的裂解更多,从而证实了部分位点的结果。使用相同的寡核苷酸底物进行的裂解分析,其中几个位置的鸟嘌呤被N7-脱氮鸟嘌呤取代,这表明鸟嘌呤的N7位置在代谢物诱导的裂解中很重要,这可能表明依托泊苷对N7-鸟嘌呤的烷基化作用。在体外测定中,不仅依托泊苷,而且其代谢产物都增强了MLL易位断点附近的DNA拓扑异构酶II裂解。依托泊苷代谢物可能与易位有关。

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