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Fumarate hydratase loss promotes mitotic entry in the presence of DNA damage after ionising radiation

机译:富马酸盐水合酶的损失在电离辐射后存在DNA损伤的情况下促进有丝分裂进入

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An altered response to DNA damage is commonly associated with genomic instability, a hallmark of cancer. Fumarate hydratase (FH) was recently characterised as a DNA repair factor required in non-homologous end-joining (NHEJ) through the local production of fumarate. Inactivating germline mutations in FH cause hereditary leiomyomatosis and renal cell cancer (HLRCC), a cancer syndrome characterised by accumulation of fumarate. Recent data indicate that, in FH-deficient cells, fumarate suppresses homologous recombination DNA repair upon DNA double-strand breaks, compromising genome integrity. Here, we show that FH loss confers resistance to DNA damage caused by ionising radiation (IR), and promotes early mitotic entry after IR in a fumarate-specific manner, even in the presence of unrepaired damage, by suppressing checkpoint maintenance. We also showed that higher levels of DNA damage foci are detectable in untreated FH-deficient cells. Overall, these data indicate that FH loss and fumarate accumulation lead to a weakened G2 checkpoint that predisposes to endogenous DNA damage and confers resistance to IR.
机译:对DNA损伤的反应改变通常与基因组不稳定性(癌症的标志)相关。富马酸盐水合酶(FH)最近被表征为通过本地生产富马酸盐在非同源末端连接(NHEJ)中所需的DNA修复因子。 FH的生殖系失活突变会导致遗传性平滑肌瘤病和肾细胞癌(HLRCC),这是一种以富马酸盐积累为特征的癌症综合征。最近的数据表明,在FH缺乏的细胞中,富马酸盐抑制DNA双链断裂时的同源重组DNA修复,从而损害了基因组的完整性。在这里,我们表明FH丧失赋予了对电离辐射(IR)引起的DNA损伤的抵抗力,并且通过抑制检查点的维护,即使在存在未修复的损伤的情况下,也可以通过富马酸酯特异性的方式促进IR后早期的有丝分裂进入。我们还表明,在未经处理的FH缺陷细胞中可检测到更高水平的DNA损伤灶。总体而言,这些数据表明FH的损失和富马酸盐的积累会导致G2检查点的减弱,这容易造成内源性DNA损伤并赋予对IR的抵抗力。

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