首页> 外文期刊>Oncogene >Reciprocal DNA topoisomerase II cleavage events at 5|[prime]|-TATTA-3|[prime]| sequences in MLL and AF-9 create homologous single-stranded overhangs that anneal to form der(11) and der(9) genomic breakpoint junctions in treatment-related AML without further processing
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Reciprocal DNA topoisomerase II cleavage events at 5|[prime]|-TATTA-3|[prime]| sequences in MLL and AF-9 create homologous single-stranded overhangs that anneal to form der(11) and der(9) genomic breakpoint junctions in treatment-related AML without further processing

机译:在5 | [prime] | -TATTA-3 | [prime] |处相互的DNA拓扑异构酶II裂解事件。 MLL和AF-9中的序列产生同源单链突出端,可退火形成与治疗相关的AML中的der(11)和der(9)基因组断点连接,而无需进一步处理

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Few t(9;11) translocations in DNA topoisomerase II inhibitor-related leukemias have been studied in detail and the DNA damage mechanism remains controversial. We characterized the der(11) and der(9) genomic breakpoint junctions in a case of AML following etoposide and doxorubicin. Etoposide-, etoposide metabolite- and doxorubicin-induced DNA topoisomerase II cleavage was examined in normal homologues of the MLL and AF-9 breakpoint sequences using an in vitro assay. Induction of DNA topoisomerase II cleavage complexes in CEM and K562 cell lines was investigated using an in vivo complex of enzyme assay. The translocation occurred between identical 5'-TATTA-3' sequences in MLL intron 8 and AF-9 intron 5 without the gain or loss of bases. The 5'-TATTA-3' sequences were reciprocally cleaved by DNA topoisomerase II in the presence of etoposide, etoposide catechol or etoposide quinone, creating homologous 4-base 5' overhangs that would anneal to form both breakpoint junctions without any processing. der(11) and der(4) translocation breakpoints in a treatment-related ALL at the same site in MLL are consistent with a damage hotspot. Etoposide and both etoposide metabolites induced DNA topoisomerase II cleavage complexes in the hematopoietic cell lines. These results favor the model in which the chromosomal breakage leading to MLL translocations in DNA topoisomerase II inhibitor-related leukemias is a consequence of DNA topoisomerase II cleavage.
机译:DNA拓扑异构酶II抑制剂相关的白血病中很少有t(9; 11)易位的研究,而DNA损伤的机制仍存在争议。我们表征了依托泊苷和阿霉素后AML的der(11)和der(9)基因组断点连接。依托泊苷,依托泊苷代谢物和阿霉素诱导的DNA拓扑异构酶II裂解使用体外测定法在MLL和AF-9断点序列的正常同源物中进行了检查。使用酶测定的体内复合物研究了在CEM和K562细胞系中DNA拓扑异构酶II切割复合物的诱导。易位发生在MLL内含子8和AF-9内含子5中相同的5'-TATTA-3'序列之间,没有碱基的增加或减少。 5'-TATTA-3'序列在依托泊苷,依托泊苷邻苯二酚或依托泊苷醌存在下被DNA拓扑异构酶II相互切割,产生同源的4碱基5'突出端,可退火形成两个断点连接而无需任何处理。与治疗相关的ALL在MLL中同一部位的der(11)和der(4)易位断点与损伤热点一致。依托泊苷和两种依托泊苷代谢物均可在造血细胞系中诱导DNA拓扑异构酶II裂解复合物。这些结果有利于模型,其中导致DNA拓扑异构酶II抑制剂相关的白血病中的MLL易位的染色体断裂是DNA拓扑异构酶II切割的结果。

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