Department of Biochemistry and Molecular Biology, University of Florida, Gainesville, Florida, USA.
Department of Biochemistry and Molecular Biology, University of Florida, Gainesville, Florida, USA.
J Biol Chem. 2024 May;300(5):107216. doi: 10.1016/j.jbc.2024.107216. Epub 2024 Mar 24.
Human DNA ligase 1 (LIG1) is the main replicative ligase that seals Okazaki fragments during nuclear replication and finalizes DNA repair pathways by joining DNA ends of the broken strand breaks in the three steps of the ligation reaction. LIG1 can tolerate the RNA strand upstream of the nick, yet an atomic insight into the sugar discrimination mechanism by LIG1 against a ribonucleotide at the 3'-terminus of nick DNA is unknown. Here, we determined X-ray structures of LIG1/3'-RNA-DNA hybrids and captured the ligase during pre- and post-step 3 the ligation reaction. Furthermore, the overlays of 3'-rA:T and 3'-rG:C step 3 structures with step 2 structures of canonical 3'-dA:T and 3'-dG:C uncover a network of LIG1/DNA interactions through Asp570 and Arg871 side chains with 2'-OH of the ribose at nick showing a final phosphodiester bond formation and the other ligase active site residues surrounding the AMP site. Finally, we demonstrated that LIG1 can ligate the nick DNA substrates with pre-inserted 3'-ribonucleotides as efficiently as Watson-Crick base-paired ends in vitro. Together, our findings uncover a novel atomic insight into a lack of sugar discrimination by LIG1 and the impact of improper sugar on the nick sealing of ribonucleotides at the last step of DNA replication and repair.
人类 DNA 连接酶 1(LIG1)是主要的复制性连接酶,它在核复制过程中封闭冈崎片段,并通过连接反应的三个步骤连接断裂链的 DNA 末端,完成 DNA 修复途径。LIG1 可以容忍尼克上游的 RNA 链,但 LIG1 对尼克 DNA 3'-末端核糖核苷酸的糖区分机制的原子见解尚不清楚。在这里,我们确定了 LIG1/3'-RNA-DNA 杂种的 X 射线结构,并在连接反应的前步和后步 3 捕获了连接酶。此外,3'-rA:T 和 3'-rG:C 步 3 结构与规范的 3'-dA:T 和 3'-dG:C 步 2 结构的叠加揭示了 LIG1/DNA 相互作用的网络,通过 Asp570 和 Arg871 侧链与尼克处的核糖 2'-OH 连接,显示出最终的磷酸二酯键形成和其他连接酶活性位点残基围绕 AMP 位点。最后,我们证明 LIG1 可以有效地连接带有预先插入的 3'-核糖核苷酸的尼克 DNA 底物,就像 Watson-Crick 碱基配对末端在体外一样。总之,我们的发现揭示了 LIG1 缺乏糖区分的新原子见解,以及不正确的糖对 DNA 复制和修复最后一步中核糖核苷酸的尼克封闭的影响。