Xu Xiaohua, Wang Jiin-Tarng, Li Min, Liu Yilun
From the Department of Cancer Genetics and Epigenetics, Beckman Research Institute, City of Hope, Duarte, California 91010-3000.
From the Department of Cancer Genetics and Epigenetics, Beckman Research Institute, City of Hope, Duarte, California 91010-3000
J Biol Chem. 2016 Oct 21;291(43):22544-22558. doi: 10.1074/jbc.M116.719963. Epub 2016 Sep 1.
The replication licensing factor CDC6 recruits the MCM2-7 replicative helicase to the replication origin, where MCM2-7 is activated to initiate DNA replication. MCM2-7 is activated by both the CDC7-Dbf4 kinase and cyclin-dependent kinase and via interactions with CDC45 and go-ichi-ni-san complex (GINS) to form the CDC45·MCM2-7·GINS (CMG) helicase complex. TIMELESS (TIM) is important for the subsequent coupling of CMG activity to DNA polymerases for efficient DNA synthesis. However, the mechanism by which TIM regulates CMG activity for proper replication fork progression remains unclear. Here we show that TIM interacts with MCM2-7 prior to the initiation of DNA replication. TIM depletion in various human cell lines results in the accumulation of aberrant CMG helicase complexes on chromatin. Importantly, the presence of these abnormal CMG helicase complexes is not restricted to cells undergoing DNA synthesis. Furthermore, even though these aberrant CMG complexes interact with the DNA polymerases on human chromatin, these complexes are not phosphorylated properly by cyclin-dependent kinase/CDC7-Dbf4 kinase and exhibit reduced DNA unwinding activity. This phenomenon coincides with a significant accumulation of the p27 and p21 replication inhibitors, reduced chromatin association of CDC6 and cyclin E, and a delay in S phase entry. Our results provide the first evidence that TIM is required for the correct chromatin association of the CMG complex to allow efficient DNA replication.
复制许可因子CDC6将MCM2-7复制解旋酶招募到复制起点,在那里MCM2-7被激活以启动DNA复制。MCM2-7可被CDC7-Dbf4激酶和细胞周期蛋白依赖性激酶激活,并通过与CDC45和Go-ichi-ni-san复合物(GINS)相互作用,形成CDC45·MCM2-7·GINS(CMG)解旋酶复合物。TIMELESS(TIM)对于随后将CMG活性与DNA聚合酶偶联以实现高效DNA合成很重要。然而,TIM调节CMG活性以促进复制叉正常进展的机制仍不清楚。在这里,我们表明TIM在DNA复制起始之前与MCM2-7相互作用。在各种人类细胞系中耗尽TIM会导致染色质上异常CMG解旋酶复合物的积累。重要的是,这些异常CMG解旋酶复合物的存在并不局限于正在进行DNA合成的细胞。此外,尽管这些异常CMG复合物与人类染色质上的DNA聚合酶相互作用,但这些复合物不能被细胞周期蛋白依赖性激酶/CDC7-Dbf4激酶正确磷酸化,并且表现出降低的DNA解旋活性。这种现象与p27和p21复制抑制剂的大量积累、CDC6和细胞周期蛋白E与染色质的结合减少以及S期进入延迟相吻合。我们的结果提供了首个证据,表明TIM是CMG复合物正确结合到染色质上以实现高效DNA复制所必需的。