Department of Molecular Biology and Biophysics, University of Connecticut Health Center, Farmington, CT 06030.
Department of Biology, Massachusetts Institute of Technology, Cambridge, MA 02139.
Proc Natl Acad Sci U S A. 2018 Aug 28;115(35):E8191-E8200. doi: 10.1073/pnas.1801149115. Epub 2018 Aug 15.
The translesion synthesis (TLS) polymerases Polζ and Rev1 form a complex that enables replication of damaged DNA. The Rev7 subunit of Polζ, which is a multifaceted HORMA (Hop1, Rev7, Mad2) protein with roles in TLS, DNA repair, and cell-cycle control, facilitates assembly of this complex by binding Rev1 and the catalytic subunit of Polζ, Rev3. Rev7 interacts with Rev3 by a mechanism conserved among HORMA proteins, whereby an open-to-closed transition locks the ligand underneath the "safety belt" loop. Dimerization of HORMA proteins promotes binding and release of this ligand, as exemplified by the Rev7 homolog, Mad2. Here, we investigate the dimerization of Rev7 when bound to the two Rev7-binding motifs (RBMs) in Rev3 by combining in vitro analyses of Rev7 structure and interactions with a functional assay in a Rev7 cell line. We demonstrate that Rev7 uses the conventional HORMA dimerization interface both to form a homodimer when tethered by the two RBMs in Rev3 and to heterodimerize with other HORMA domains, Mad2 and p31 Structurally, the Rev7 dimer can bind only one copy of Rev1, revealing an unexpected Rev1/Polζ architecture. In cells, mutation of the Rev7 dimer interface increases sensitivity to DNA damage. These results provide insights into the structure of the Rev1/Polζ TLS assembly and highlight the function of Rev7 homo- and heterodimerization.
跨损伤合成 (TLS) 聚合酶 Polζ 和 Rev1 形成复合物,使受损 DNA 的复制成为可能。Polζ 的 Rev7 亚基是一种多功能的 HORMA(Hop1、Rev7、Mad2)蛋白,具有 TLS、DNA 修复和细胞周期控制的作用,通过与 Rev1 和 Polζ 的催化亚基 Rev3 结合,促进复合物的组装。Rev7 通过 HORMA 蛋白之间保守的机制与 Rev3 相互作用,其中从开放到闭合的转变将配体锁定在“安全带”环下。HORMA 蛋白的二聚化促进了这种配体的结合和释放,Rev7 同源物 Mad2 就是一个很好的例子。在这里,我们通过结合 Rev7 结构的体外分析和 Rev7 细胞系中的功能测定,研究了 Rev7 与 Rev3 中的两个 Rev7 结合基序 (RBM) 结合时的二聚化。我们证明,Rev7 既可以使用传统的 HORMA 二聚化界面,当被 Rev3 中的两个 RBM 束缚时形成同源二聚体,也可以与其他 HORMA 结构域 Mad2 和 p31 异源二聚化。结构上,Rev7 二聚体只能结合一个 Rev1 拷贝,揭示了一种出人意料的 Rev1/Polζ 结构。在细胞中,Rev7 二聚化界面的突变会增加对 DNA 损伤的敏感性。这些结果提供了对 Rev1/Polζ TLS 组装结构的深入了解,并强调了 Rev7 同源和异源二聚化的功能。