Institute of Molecular Oncology, Göttingen Center of Molecular Biosciences (GZMB), University Medical Center Göttingen, 37077, Göttingen, Germany.
Cell Death Dis. 2020 Jul 16;11(7):538. doi: 10.1038/s41419-020-2727-2.
The integrated stress response (ISR) allows cells to rapidly shutdown most of their protein synthesis in response to protein misfolding, amino acid deficiency, or virus infection. These stresses trigger the phosphorylation of the translation initiation factor eIF2alpha, which prevents the initiation of translation. Here we show that triggering the ISR drastically reduces the progression of DNA replication forks within 1 h, thus flanking the shutdown of protein synthesis with immediate inhibition of DNA synthesis. DNA replication is restored by compounds that inhibit eIF2alpha kinases or re-activate eIF2alpha. Mechanistically, the translational shutdown blocks histone synthesis, promoting the formation of DNA:RNA hybrids (R-loops), which interfere with DNA replication. R-loops accumulate upon histone depletion. Conversely, histone overexpression or R-loop removal by RNaseH1 each restores DNA replication in the context of ISR and histone depletion. In conclusion, the ISR rapidly stalls DNA synthesis through histone deficiency and R-loop formation. We propose that this shutdown mechanism prevents potentially detrimental DNA replication in the face of cellular stresses.
细胞应激反应(ISR)允许细胞在蛋白质错误折叠、氨基酸缺乏或病毒感染时迅速关闭大多数蛋白质合成。这些应激会触发翻译起始因子 eIF2alpha 的磷酸化,从而阻止翻译的起始。在这里,我们表明触发 ISR 在 1 小时内急剧降低 DNA 复制叉的进展,从而在蛋白质合成关闭的同时立即抑制 DNA 合成。通过抑制 eIF2alpha 激酶或重新激活 eIF2alpha 的化合物可以恢复 DNA 复制。从机制上讲,翻译关闭阻止组蛋白合成,促进 DNA:RNA 杂交(R 环)的形成,从而干扰 DNA 复制。组蛋白耗竭时 R 环积累。相反,组蛋白过表达或 RNaseH1 去除 R 环都可以在 ISR 和组蛋白耗竭的情况下恢复 DNA 复制。总之,ISR 通过组蛋白缺乏和 R 环形成迅速停止 DNA 合成。我们提出,这种关闭机制可防止细胞应激时潜在有害的 DNA 复制。