Graduate School of Science, Osaka University, Osaka, Japan.
Mol Biol Cell. 2012 Aug;23(16):3240-53. doi: 10.1091/mbc.E12-05-0339. Epub 2012 Jun 20.
DNA polymerase epsilon (Pol ε) synthesizes the leading strands, following the CMG (Cdc45, Mcm2-7, and GINS [Go-Ichi-Nii-San]) helicase that translocates on the leading-strand template at eukaryotic replication forks. Although Pol ε is essential for the viability of fission and budding yeasts, the N-terminal polymerase domain of the catalytic subunit, Cdc20/Pol2, is dispensable for viability, leaving the following question: what is the essential role(s) of Pol ε? In this study, we investigated the essential roles of Pol ε using a temperature-sensitive mutant and a recently developed protein-depletion (off-aid) system in fission yeast. In cdc20-ct1 cells carrying mutations in the C-terminal domain of Cdc20, the CMG components, RPA, Pol α, and Pol δ were loaded onto replication origins, but Cdc45 did not translocate from the origins, suggesting that Pol ε is required for CMG helicase progression. In contrast, depletion of Cdc20 abolished the loading of GINS and Cdc45 onto origins, indicating that Pol ε is essential for assembly of the CMG complex. These results demonstrate that Pol ε plays essential roles in both the assembly and progression of CMG helicase.
DNA 聚合酶 ε(Pol ε)合成前导链,紧随 CMG(Cdc45、Mcm2-7 和 GINS[Go-Ichi-Nii-San])解旋酶之后,该解旋酶在真核复制叉上沿前导链模板移动。虽然 Pol ε 对裂殖酵母和芽殖酵母的存活是必需的,但催化亚基 Cdc20/Pol2 的 N 端聚合酶结构域对于存活是可有可无的,这就提出了一个问题:Pol ε 的必需作用是什么?在这项研究中,我们使用温度敏感突变体和最近开发的蛋白缺失(辅助去除)系统在裂殖酵母中研究了 Pol ε 的必需作用。在携带 Cdc20 C 端结构域突变的 cdc20-ct1 细胞中,CMG 成分、RPA、Pol α 和 Pol δ 被加载到复制起点,但 Cdc45 没有从起点迁移,这表明 Pol ε 是 CMG 解旋酶前进所必需的。相比之下,Cdc20 的缺失会使 GINS 和 Cdc45 无法加载到起点,表明 Pol ε 对 CMG 复合物的组装是必需的。这些结果表明,Pol ε 在 CMG 解旋酶的组装和前进中都发挥着重要作用。