首页> 外文期刊>The American Journal of Human Genetics >Nucleotide-resolution mapping of topoisomerase-mediated and apoptotic DNA strand scissions at or near an MLL translocation hotspot
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Nucleotide-resolution mapping of topoisomerase-mediated and apoptotic DNA strand scissions at or near an MLL translocation hotspot

机译:在MLL易位热点处或附近的拓扑异构酶介导的凋亡DNA链切割的核苷酸分辨率图谱

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The emergence of therapy-related acute myeloid leukemia (t-AML) has been associated with DNA topoisomerase II (TOP2)-targeted drug treatments and chromosomal translocations frequently involving the MLL, or ALL-1, gene. Two distinct mechanisms have been implicated as potential triggers of t-AML translocations: TOP2-mediated DNA cleavage and apoptotic higher-order chromatin fragmentation. Assessment of the role of TOP2 in this process has been hampered by a lack of techniques allowing in vivo mapping of TOP2-mediated DNA cleavage at nucleotide resolution in single-copy genes. A novel method, extension ligation-mediated polymerase chain reaction (ELMPCR), was used here for mapping topoisomerase-mediated DNA strand breaks and apoptotic DNA cleavage across a translocation-prone region of MLL in human cells. We report the first genomic map integrating translocation breakpoints and topoisomerase I, TOP2, and apoptotic DNA cleavage sites at nucleotide resolution across an MLL region harboring a t-AML translocation hotspot. This hotspot is flanked by a TOP2 cleavage site and is localized at one extremity of a minor apoptotic cleavage region, where multiple single- and double-strand breaks were induced by caspase-activated apoptotic nucleases. This cleavage pattern was in sharp contrast to that observed similar to 200 bp downstream in the exon 12 region, which displayed much stronger apoptotic cleavage but where no double-strand breaks were detected and no t-AML-associated breakpoints were reported. The localization and remarkable clustering of the t-AML breakpoints cannot be explained simply by the DNA cleavage patterns but might result from potential interactions between TOP2 poisoning, apoptotic DNA cleavage, and DNA repair attempts at specific sites of higher-order chromatin structure in apoptosis-evading cells. ELMPCR provides a new tool for investigating the role of DNA topoisomerases in fundamental genetic processes and translocations associated with cancer treatments involving topoisomerase-targeted drugs.
机译:与治疗有关的急性髓细胞性白血病(t-AML)的出现与以DNA拓扑异构酶II(TOP2)为目标的药物治疗以及经常涉及MLL或ALL-1基因的染色体易位有关。有两种不同的机制被认为是t-AML易位的潜在诱因:TOP2介导的DNA裂解和凋亡的高阶染色质片段化。由于缺乏技术,无法在单拷贝基因中以核苷酸分辨率对TOP2介导的DNA裂解进行体内作图,因此妨碍了对TOP2在此过程中的作用的评估。一种新的方法,延伸连接介导的聚合酶链反应(ELMPCR),在这里用于在人类细胞中跨MLL易位区域绘制拓扑异构酶介导的DNA链断裂和凋亡DNA切割。我们报告了第一个基因组图谱,整合了易位断点和拓扑异构酶I,TOP2和凋亡DNA切割位点,在包含t-AML易位热点的MLL区域的核苷酸分辨率上。这个热点的两侧是TOP2裂解位点,位于一个小的凋亡裂解区的一个末端,在该处,胱天蛋白酶激活的凋亡核酸酶诱导了多个单链和双链断裂。该切割模式与在外显子12区域中观察到的类似于下游200bp的切割模式形成鲜明对比,其显示出更强的凋亡切割,但是没有检测到双链断裂并且没有报道t-AML相关的断裂点。 t-AML断裂点的定位和明显的聚类不能简单地通过DNA裂解模式来解释,而可能是由于TOP2中毒,凋亡性DNA裂解和DNA修复尝试在细胞凋亡中高阶染色质结构的特定位点之间的潜在相互作用所致。逃避细胞。 ELMPCR提供了一种新的工具,用于研究DNA拓扑异构酶在与涉及拓扑异构酶靶向药物的癌症治疗相关的基本遗传过程和易位中的作用。

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