首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Near-precise interchromosomal recombination and functional DNA topoisomerase II cleavage sites at MLL and AF-4 genomic breakpoints in treatment-related acute lymphoblastic leukemia with t(4;11) translocation
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Near-precise interchromosomal recombination and functional DNA topoisomerase II cleavage sites at MLL and AF-4 genomic breakpoints in treatment-related acute lymphoblastic leukemia with t(4;11) translocation

机译:近乎精确的染色体间重组和功能性DNA MLL和MLL的拓扑异构酶II切割位点 与治疗相关的急性AF-4基因组断裂点 t(4; 11)易位的淋巴母细胞白血病

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摘要

We analyzed the der(11) and der(4) genomic breakpoint junctions of a t(4;11) in the leukemia of a patient previously administered etoposide and dactinomycin by molecular and biochemical approaches to gain insights about the translocation mechanism and the relevant drug exposure. The genomic breakpoint junctions were amplified by PCR. Cleavage of DNA substrates containing the normal homologues of the MLL and AF-4 translocation breakpoints was examined in vitro upon incubation with human DNA topoisomerase IIα and etoposide, etoposide catechol, etoposide quinone, or dactinomycin. The der(11) and der(4) genomic breakpoint junctions both involved MLL intron 6 and AF-4 intron 3. Recombination was precise at the sequence level except for the overall gain of a single templated nucleotide. The translocation breakpoints in MLL and AF-4 were DNA topoisomerase II cleavage sites. Etoposide and its metabolites, but not dactinomycin, enhanced cleavage at these sites. Assuming that DNA topoisomerase II was the mediator of the breakage, processing of the staggered nicks induced by DNA topoisomerase II, including exonucleolytic deletion and template-directed polymerization, would have been required before ligation of the ends to generate the observed genomic breakpoint junctions. These data are inconsistent with a translocation mechanism involving interchromosomal recombination by simple exchange of DNA topoisomerase II subunits and DNA-strand transfer; however, consistent with reciprocal DNA topoisomerase II cleavage events in MLL and AF-4 in which both breaks became stable, the DNA ends were processed and underwent ligation. Etoposide and/or its metabolites, but not dactinomycin, likely were the relevant exposures in this patient.
机译:我们通过分子和生化方法分析了先前用依托泊苷和放线菌素治疗的患者白血病中at(4; 11)的der(11)和der(4)基因组断裂点连接点,以了解有关转运机制和相关药物暴露的见解。通过PCR扩增基因组断裂点连接。与人DNA拓扑异构酶IIα和依托泊苷,依托泊苷邻苯二酚,依托泊苷醌或放线菌素一起孵育后,体外检查了含有MLL和AF-4易位断点的正常同源物的DNA底物的裂解。 der(11)和der(4)基因组断裂点连接都涉及MLL内含子6和AF-4内含子3。重组在序列水平上是精确的,除了单个模板核苷酸的整体增益。 MLL和AF-4中的易位转位点是DNA拓扑异构酶II切割位点。依托泊苷及其代谢产物而不是放线菌素增强了在这些部位的切割。假设DNA拓扑异构酶II是断裂的介体, DNA拓扑异构酶II诱导的交错切口的加工, 包括核酸外切缺失和模板指导的聚合, 在结扎末端之前需要先生成 观察到的基因组断点连接。这些数据与 涉及染色体间重组的易位机制。 DNA拓扑异构酶II亚基和DNA链的简单交换 传递;然而,与相互的DNA拓扑异构酶II一致 MLL和AF-4中的裂解事件,其中 两次断裂均变得稳定,DNA末端均已处理并经过 结扎。依托泊苷和/或其代谢产物,而不是放线菌素, 可能是该患者的相关暴露。

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