Liu Emma Y, Xu Naihan, O'Prey Jim, Lao Laurence Y, Joshi Sanket, Long Jaclyn S, O'Prey Margaret, Croft Daniel R, Beaumatin Florian, Baudot Alice D, Mrschtik Michaela, Rosenfeldt Mathias, Zhang Yaou, Gillespie David A, Ryan Kevin M
Cancer Research UK Beatson Institute, Glasgow G61 1BD, United Kingdom; and.
Cancer Research UK Beatson Institute, Glasgow G61 1BD, United Kingdom; and Division of Life Science, Graduate School at Shenzhen, Tsinghua University, Shenzhen 518055, China.
Proc Natl Acad Sci U S A. 2015 Jan 20;112(3):773-8. doi: 10.1073/pnas.1409563112. Epub 2015 Jan 7.
(Macro)autophagy delivers cellular constituents to lysosomes for degradation. Although a cytoplasmic process, autophagy-deficient cells accumulate genomic damage, but an explanation for this effect is currently unclear. We report here that inhibition of autophagy causes elevated proteasomal activity leading to enhanced degradation of checkpoint kinase 1 (Chk1), a pivotal factor for the error-free DNA repair process, homologous recombination (HR). We show that loss of autophagy critically impairs HR and that autophagy-deficient cells accrue micronuclei and sub-G1 DNA, indicators of diminished genomic integrity. Moreover, due to impaired HR, autophagy-deficient cells are hyperdependent on nonhomologous end joining (NHEJ) for repair of DNA double-strand breaks. Consequently, inhibition of NHEJ following DNA damage in the absence of autophagy results in persistence of genomic lesions and rapid cell death. Because autophagy deficiency occurs in several diseases, these findings constitute an important link between autophagy and DNA repair and highlight a synthetic lethal strategy to kill autophagy-deficient cells.
(巨)自噬将细胞成分输送到溶酶体进行降解。尽管自噬是一个细胞质过程,但自噬缺陷细胞会积累基因组损伤,不过目前尚不清楚这种效应的原因。我们在此报告,自噬的抑制会导致蛋白酶体活性升高,从而增强对细胞周期检查点激酶1(Chk1)的降解,Chk1是无差错DNA修复过程——同源重组(HR)的关键因子。我们表明,自噬的缺失严重损害HR,且自噬缺陷细胞会积累微核和亚G1期DNA,这些都是基因组完整性受损的指标。此外,由于HR受损,自噬缺陷细胞在修复DNA双链断裂时高度依赖非同源末端连接(NHEJ)。因此,在缺乏自噬的情况下,DNA损伤后抑制NHEJ会导致基因组损伤持续存在并迅速导致细胞死亡。由于自噬缺陷存在于多种疾病中,这些发现构成了自噬与DNA修复之间的重要联系,并突出了一种杀死自噬缺陷细胞的合成致死策略。