Laboratory of Chromatin Biology and Epigenetics, Centre for DNA Fingerprinting and Diagnostics, Hyderabad, India.
Graduate Studies, Manipal Academy of Higher Education, Manipal, India.
Elife. 2021 Oct 5;10:e70787. doi: 10.7554/eLife.70787.
In eukaryotes, paused replication forks are prone to collapse, which leads to genomic instability, a hallmark of cancer. Dbf4-dependent kinase (DDK)/Hsk1 is a conserved replication initiator kinase with conflicting roles in replication stress response. Here, we show that fission yeast DDK/Hsk1 phosphorylates sirtuin, Hst4 upon replication stress at C-terminal serine residues. Phosphorylation of Hst4 by DDK marks it for degradation via the ubiquitin ligase SCF. Phosphorylation-defective mutant () displays defective recovery from replication stress, faulty fork restart, slow S-phase progression and decreased viability. The highly conserved fork protection complex (FPC) stabilizes stalled replication forks. We found that the recruitment of FPC components, Swi1 and Mcl1 to the chromatin is compromised in the mutant, although whole cell levels increased. These defects are dependent upon H3K56ac and independent of intra S-phase checkpoint activation. Finally, we show conservation of H3K56ac-dependent regulation of Timeless, Tipin, and And-1 in human cells. We propose that degradation of Hst4 via DDK increases H3K56ac, changing the chromatin state in the vicinity of stalled forks facilitating recruitment and function of FPC. Overall, this study identified a crucial role of DDK and FPC in the regulation of replication stress response with implications in cancer therapeutics.
在真核生物中,暂停的复制叉容易崩溃,导致基因组不稳定,这是癌症的一个标志。Dbf4 依赖性激酶(DDK)/Hsk1 是一种保守的复制起始激酶,在复制应激反应中具有冲突的作用。在这里,我们表明裂殖酵母 DDK/Hsk1 在复制应激时在 C 端丝氨酸残基上磷酸化组蛋白脱乙酰基酶,Hst4。DDK 对 Hst4 的磷酸化将其标记为通过泛素连接酶 SCF 进行降解。磷酸化缺陷突变体 () 显示出在复制应激后恢复缺陷、叉重新启动故障、S 期进展缓慢和活力降低。高度保守的叉保护复合物(FPC)稳定停滞的复制叉。我们发现,在 突变体中,FPC 成分 Swi1 和 Mcl1 向染色质的募集受损,尽管全细胞水平增加。这些缺陷依赖于 H3K56ac,并且不依赖于内 S 期检查点的激活。最后,我们表明 H3K56ac 依赖性调控在人类细胞中是保守的,包括 Timeless、Tipin 和 And-1。我们提出,通过 DDK 降解 Hst4 增加 H3K56ac,改变停滞叉附近的染色质状态,促进 FPC 的募集和功能。总的来说,这项研究确定了 DDK 和 FPC 在复制应激反应调控中的关键作用,这对癌症治疗具有重要意义。