Molecular Biology Program, Memorial Sloan Kettering Cancer Center, New York, NY, USA.
Weill-Cornell Graduate School of Medical Sciences, New York, NY, USA.
Nat Struct Mol Biol. 2022 Apr;29(4):369-375. doi: 10.1038/s41594-022-00741-7. Epub 2022 Mar 21.
Single-stranded or double-stranded DNA junctions with recessed 5' ends serve as loading sites for the checkpoint clamp, 9-1-1, which mediates activation of the apical checkpoint kinase, ATR. However, the basis for 9-1-1's recruitment to 5' junctions is unclear. Here, we present structures of the yeast checkpoint clamp loader, Rad24-replication factor C (RFC), in complex with 9-1-1 and a 5' junction and in a post-ATP-hydrolysis state. Unexpectedly, 9-1-1 adopts both closed and planar open states in the presence of Rad24-RFC and DNA. Moreover, Rad24-RFC associates with the DNA junction in the opposite orientation of processivity clamp loaders with Rad24 exclusively coordinating the double-stranded region. ATP hydrolysis stimulates conformational changes in Rad24-RFC, leading to disengagement of DNA-loaded 9-1-1. Together, these structures explain 9-1-1's recruitment to 5' junctions and reveal new principles of sliding clamp loading.
具有凹陷 5' 末端的单链或双链 DNA 连接点可作为检查点钳的加载位点,检查点钳 9-1-1 介导顶端检查点激酶 ATR 的激活。然而,9-1-1 招募到 5' 连接点的基础尚不清楚。在这里,我们展示了酵母检查点钳加载器 Rad24-复制因子 C (RFC) 与 9-1-1 和 5' 连接点以及在 ATP 水解后状态的复合物的结构。出乎意料的是,在 Rad24-RFC 和 DNA 的存在下,9-1-1 采用了闭合和平面开放两种状态。此外,Rad24-RFC 与 DNA 连接点以与具有 Rad24 的进程性夹加载器相反的方向结合,Rad24 仅协调双链区域。ATP 水解刺激 Rad24-RFC 的构象变化,导致负载 DNA 的 9-1-1 脱离。这些结构共同解释了 9-1-1 招募到 5' 连接点的机制,并揭示了滑动夹加载的新原理。