Medical Research Council Cancer Unit, University of Cambridge, Hutchison/MRC research centre, Box 197, Cambridge Biomedical Campus, Cambridge, CB2 0XZ, United Kingdom.
Cell Death Dis. 2018 Sep 6;9(9):913. doi: 10.1038/s41419-018-0912-3.
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.
DNA 损伤反应的改变通常与基因组不稳定性有关,这是癌症的一个标志。最近的研究表明,FH 是一种 DNA 修复因子,通过局部产生富马酸参与非同源末端连接(NHEJ)。FH 的种系失活突变导致遗传性平滑肌瘤病和肾细胞癌(HLRCC),这是一种癌症综合征,其特征是富马酸的积累。最近的数据表明,在 FH 缺陷细胞中,富马酸在 DNA 双链断裂后抑制同源重组 DNA 修复,从而损害基因组完整性。在这里,我们表明 FH 缺失赋予了对电离辐射(IR)引起的 DNA 损伤的抗性,并以富马酸特异性的方式促进 IR 后早期有丝分裂进入,即使在存在未修复的损伤的情况下,也通过抑制检查点维持来实现。我们还表明,在未经处理的 FH 缺陷细胞中,可以检测到更高水平的 DNA 损伤焦点。总的来说,这些数据表明 FH 缺失和富马酸积累导致 G2 检查点减弱,从而易发生内源性 DNA 损伤,并赋予对 IR 的抗性。