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Numerical chromosomal instability mediates susceptibility to radiation treatment

机译:染色体的数值不稳定性介导了对放射治疗的敏感性

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摘要

The exquisite sensitivity of mitotic cancer cells to ionizing radiation (IR) underlies an important rationale for the widely used fractionated radiation therapy. However, the mechanism for this cell cycle-dependent vulnerability is unknown. Here we show that treatment with IR leads to mitotic chromosome segregation errors in vivo and long-lasting aneuploidy in tumour-derived cell lines. These mitotic errors generate an abundance of micronuclei that predispose chromosomes to subsequent catastrophic pulverization thereby independently amplifying radiation-induced genome damage. Experimentally suppressing whole-chromosome missegregation reduces downstream chromosomal defects and significantly increases the viability of irradiated mitotic cells. Further, orthotopically transplanted human glioblastoma tumours in which chromosome missegregation rates have been reduced are rendered markedly more resistant to IR, exhibiting diminished markers of cell death in response to treatment. This work identifies a novel mitotic pathway for radiation-induced genome damage, which occurs outside of the primary nucleus and augments chromosomal breaks. This relationship between radiation treatment and whole-chromosome missegregation can be exploited to modulate therapeutic response in a clinically relevant manner.
机译:有丝分裂癌细胞对电离辐射(IR)的出色敏感性是广泛使用分级放射治疗的重要原理。但是,此细胞周期依赖性漏洞的机制尚不清楚。在这里,我们显示用IR治疗会导致体内的有丝分裂染色体分离错误,以及在肿瘤衍生的细胞系中长期存在非整倍性。这些有丝分裂错误会产生大量的微核,使染色体易于发生随后的灾难性粉碎,从而独立地放大了辐射诱导的基因组损伤。实验上抑制全染色体错聚减少了下游染色体缺陷,并显着提高了辐射的有丝分裂细胞的活力。此外,使染色体错位率降低的原位移植的人胶质母细胞瘤肿瘤明显对IR具有更强的抵抗力,表现出对治疗反应的细胞死亡标记减少。这项工作确定了辐射诱导的基因组损伤的一种新的有丝分裂途径,这种损伤发生在原核的外面,并增加了染色体的断裂。可以利用放射治疗与全染色体错聚之间的这种关系以临床相关的方式调节治疗反应。

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