Institute of Systems Biomedicine, Department of Pathology, Beijing Key Laboratory of Tumor Systems Biology, School of Basic Medical Sciences, Peking University Health Science Center, Beijing, 100191, China.
Department of Biochemistry and Biophysics, School of Basic Medical Sciences, Peking University Health Science Center, Beijing, 100191, China.
Nat Commun. 2020 Apr 24;11(1):1972. doi: 10.1038/s41467-020-15879-5.
Shieldin, including SHLD1, SHLD2, SHLD3 and REV7, functions as a bridge linking 53BP1-RIF1 and single-strand DNA to suppress the DNA termini nucleolytic resection during non-homologous end joining (NHEJ). However, the mechanism of shieldin assembly remains unclear. Here we present the crystal structure of the SHLD3-REV7-SHLD2 ternary complex and reveal an unexpected C (closed)-REV7-O (open)-REV7 conformational dimer mediated by SHLD3. We show that SHLD2 interacts with O-REV7 and the N-terminus of SHLD3 by forming β sheet sandwich. Disruption of the REV7 conformational dimer abolishes the assembly of shieldin and impairs NHEJ efficiency. The conserved FXPWFP motif of SHLD3 binds to C-REV7 and blocks its binding to REV1, which excludes shieldin from the REV1/Pol ζ translesion synthesis (TLS) complex. Our study reveals the molecular architecture of shieldin assembly, elucidates the structural basis of the REV7 conformational dimer, and provides mechanistic insight into orchestration between TLS and NHEJ.
Shieldin 包括 SHLD1、SHLD2、SHLD3 和 REV7,作为连接 53BP1-RIF1 和单链 DNA 的桥梁,在非同源末端连接(NHEJ)过程中抑制 DNA 末端核酸酶切除。然而,shieldin 组装的机制仍不清楚。在这里,我们展示了 SHLD3-REV7-SHLD2 三元复合物的晶体结构,并揭示了一种出乎意料的由 SHLD3 介导的 C(封闭)-REV7-O(开放)-REV7 构象二聚体。我们表明,SHLD2 通过形成β 片三明治与 O-REV7 和 SHLD3 的 N 端相互作用。破坏 REV7 构象二聚体可阻止 shieldin 的组装并损害 NHEJ 效率。SHLD3 的保守 FXPWFP 基序结合 C-REV7 并阻止其与 REV1 结合,从而将 shieldin 排除在 REV1/Pol ζ 跨损伤合成(TLS)复合物之外。我们的研究揭示了 shieldin 组装的分子结构,阐明了 REV7 构象二聚体的结构基础,并为 TLS 和 NHEJ 之间的协调提供了机制见解。