生物
复制前复合体
染色体复制控制
回复
DNA复制
DNA再复制
细胞生物学
泛素连接酶
许可因素
S相
DNA连接酶
细胞周期
微小染色体维持
复制因子C
原点识别复合体
DNA复制因子CDT1
细胞分裂控制蛋白4
分子生物学
DNA
真核细胞DNA复制
复制蛋白A
泛素
遗传学
DNA修复
冈崎碎片
DNA聚合酶
细胞
基因
作者
Kimberlie A Wittig,Courtney G. Sansam,Tyler D. Noble,Duane Goins,Christopher L. Sansam
摘要
A DNA replication program, which ensures that the genome is accurately and wholly replicated, is established during G1, before the onset of S phase. In G1, replication origins are licensed, and upon S phase entry, a subset of these will form active replisomes. Tight regulation of the number of active replisomes is crucial to prevent replication stress-induced DNA damage. TICRR/TRESLIN is essential for DNA replication initiation, and the level of TICRR and its phosphorylation determine the number of origins that initiate during S phase. However, the mechanisms regulating TICRR protein levels are unknown. Therefore, we set out to define the TICRR/TRESLIN protein dynamics throughout the cell cycle. Here, we show that TICRR levels are high during G1 and dramatically decrease as cells enter S phase and begin DNA replication. We show that degradation of TICRR occurs specifically during S phase and depends on ubiquitin ligases and proteasomal degradation. Using two targeted siRNA screens, we identify CRL4DTL as a cullin complex necessary for TICRR degradation. We propose that this mechanism moderates the level of TICRR protein available for replication initiation, ensuring the proper number of active origins as cells progress through S phase.
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