School of Life Sciences, University of Nottingham, Nottingham, UK.
Bioscience Program, Biological and Environmental Science and Engineering, King Abdullah University of Science and Technology (KAUST), Thuwal, Saudi Arabia.
Nucleic Acids Res. 2023 Feb 28;51(4):1740-1749. doi: 10.1093/nar/gkad032.
DNA strand breaks are repaired by DNA synthesis from an exposed DNA end paired with a homologous DNA template. DNA polymerase delta (Pol δ) catalyses DNA synthesis in multiple eukaryotic DNA break repair pathways but triggers genome instability unless its activity is restrained. We show that human HelQ halts DNA synthesis by isolated Pol δ and Pol δ-PCNA-RPA holoenzyme. Using novel HelQ mutant proteins we identify that inhibition of Pol δ is independent of DNA binding, and maps to a 70 amino acid intrinsically disordered region of HelQ. Pol δ and its POLD3 subunit robustly stimulated DNA single-strand annealing by HelQ, and POLD3 and HelQ interact physically via the intrinsically disordered HelQ region. This data, and inability of HelQ to inhibit DNA synthesis by the POLD1 catalytic subunit of Pol δ, reveal a mechanism for limiting DNA synthesis and promoting DNA strand annealing during human DNA break repair, which centres on POLD3.
DNA 链断裂通过从与同源 DNA 模板配对的暴露 DNA 末端进行 DNA 合成来修复。DNA 聚合酶 delta(Pol δ)在多种真核 DNA 断裂修复途径中催化 DNA 合成,但如果其活性不受限制,会引发基因组不稳定性。我们表明,人源 HelQ 通过分离的 Pol δ 和 Pol δ-PCNA-RPA 全酶来终止 DNA 合成。使用新型 HelQ 突变蛋白,我们鉴定出抑制 Pol δ 不依赖于 DNA 结合,并定位于 HelQ 的一个 70 个氨基酸的固有无序区域。Pol δ 和其 POLD3 亚基可通过 HelQ 有力地刺激 DNA 单链退火,并且 POLD3 和 HelQ 通过内在无序的 HelQ 区域发生物理相互作用。这些数据以及 HelQ 不能抑制 Pol δ 的 POLD1 催化亚基的 DNA 合成表明,在人类 DNA 断裂修复过程中限制 DNA 合成并促进 DNA 链退火的机制集中在 POLD3 上。