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首页> 外文期刊>Frontiers in Cell and Developmental Biology >Leukemogenic rearrangements at the mixed lineage leukemia gene (MLL)—multiple rather than a single mechanism
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Leukemogenic rearrangements at the mixed lineage leukemia gene (MLL)—multiple rather than a single mechanism

机译:混合谱系白血病基因(MLL)的致白血病重排-多重而非单一机制

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Despite manifold efforts to achieve reduced-intensity and -toxicity regimens, secondary leukemia has remained the most severe side effect of chemotherapeutic cancer treatment. Rearrangements involving a short telomeric <1kb region of the mixed lineage leukemia (MLL) gene are the most frequently observed molecular changes in secondary as well as infant acute leukemia. Due to the mode-of-action of epipodophyllotoxins and anthracyclines, which have widely been used in cancer therapy, and support from in vitro experiments, cleavage of this MLL breakpoint cluster hotspot by poisoned topoisomerase II was proposed to trigger the molecular events leading to malignant transformation. Later on, clinical patient data and cell-based studies addressing a wider spectrum of stimuli identified cellular stress signaling pathways, which create secondary DNA structures, provide chromatin accessibility, and activate nucleases other than topoisomerase II at the MLL. The MLL destabilizing signaling pathways under discussion, namely early apoptotic DNA fragmentation, transcription stalling, and replication stalling, may all act in concert upon infection-, transplantation-, or therapy-induced cell cycle entry of hematopoietic stem and progenitor cells, to permit misguided cleavage and error-prone DNA repair in the cell-of-leukemia-origin.
机译:尽管为降低强度和毒性而做出了种种努力,继发性白血病仍然是化学疗法治疗癌症最严重的副作用。混合谱系白血病(MLL)基因的端粒<1kb短区域的重排是继发性以及婴儿急性白血病中最常见的分子变化。由于表鬼臼毒素和蒽环类药物的作用方式已广泛用于癌症治疗,并得到体外实验的支持,因此有人提出用毒性拓扑异构酶II裂解该MLL断点簇热点来触发导致恶性肿瘤的分子事件。转型。后来,针对更广泛范围的刺激的临床患者数据和基于细胞的研究确定了细胞应激信号通路,该通路产生二级DNA结构,提供了染色质可及性,并在MLL激活了拓扑异构酶II以外的核酸酶。讨论中的MLL不稳定信号通路,即早期凋亡性DNA片段化,转录停滞和复制停滞,都可能在感染,移植或治疗诱导的造血干细胞和祖细胞细胞周期进入过程中共同起作用,从而导致误导起源于白血病细胞中的核酸裂解和易错DNA修复。

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