Department of Biological Sciences, Ulsan National Institute of Science and Technology, Ulsan 44919, Republic of Korea.
Institute of Basic Science Center for Genomic Integrity, Ulsan 44919, Republic of Korea.
Nucleic Acids Res. 2024 Jan 11;52(1):259-273. doi: 10.1093/nar/gkad1101.
R-loops are three-stranded nucleic acid structures that can cause replication stress by blocking replication fork progression. However, the detailed mechanism underlying the collision of DNA replication forks and R-loops remains elusive. To investigate how R-loops induce replication stress, we use single-molecule fluorescence imaging to directly visualize the collision of replicating Phi29 DNA polymerase (Phi29 DNAp), the simplest replication system, and R-loops. We demonstrate that a single R-loop can block replication, and the blockage is more pronounced when an RNA-DNA hybrid is on the non-template strand. We show that this asymmetry results from secondary structure formation on the non-template strand, which impedes the progression of Phi29 DNAp. We also show that G-quadruplex formation on the displaced single-stranded DNA in an R-loop enhances the replication stalling. Moreover, we observe the collision between Phi29 DNAp and RNA transcripts synthesized by T7 RNA polymerase (T7 RNAp). RNA transcripts cause more stalling because of the presence of T7 RNAp. Our work provides insights into how R-loops impede DNA replication at single-molecule resolution.
R 环是三链核酸结构,可通过阻止复制叉前进引起复制应激。然而,DNA 复制叉与 R 环碰撞的详细机制仍难以捉摸。为了研究 R 环如何诱导复制应激,我们使用单分子荧光成像技术直接观察最简单的复制系统 Phi29 DNA 聚合酶(Phi29 DNAp)与 R 环的碰撞。我们证明单个 R 环可以阻断复制,并且当 RNA-DNA 杂交体位于非模板链上时,阻断更为明显。我们表明这种不对称性是由于非模板链上的二级结构形成所致,这阻碍了 Phi29 DNAp 的前进。我们还表明,R 环中置换单链 DNA 上的 G-四链体形成增强了复制停顿。此外,我们观察到 Phi29 DNAp 与 T7 RNA 聚合酶(T7 RNAp)合成的 RNA 转录本之间的碰撞。由于存在 T7 RNAp,RNA 转录本导致更多的停顿。我们的工作提供了对 R 环如何在单分子分辨率下阻碍 DNA 复制的深入了解。