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SCAI 通过范可尼贫血途径促进 DNA 链间交联的无差错修复。

SCAI promotes error-free repair of DNA interstrand crosslinks via the Fanconi anemia pathway.

机构信息

Protein Signaling Program, Novo Nordisk Foundation Center for Protein Research, University of Copenhagen, Copenhagen, Denmark.

Proteomics Program, Novo Nordisk Foundation Center for Protein Research, University of Copenhagen, Copenhagen, Denmark.

出版信息

EMBO Rep. 2022 Apr 5;23(4):e53639. doi: 10.15252/embr.202153639. Epub 2022 Feb 14.

Abstract

DNA interstrand crosslinks (ICLs) are cytotoxic lesions that threaten genome integrity. The Fanconi anemia (FA) pathway orchestrates ICL repair during DNA replication, with ubiquitylated FANCI-FANCD2 (ID2) marking the activation step that triggers incisions on DNA to unhook the ICL. Restoration of intact DNA requires the coordinated actions of polymerase ζ (Polζ)-mediated translesion synthesis (TLS) and homologous recombination (HR). While the proteins mediating FA pathway activation have been well characterized, the effectors regulating repair pathway choice to promote error-free ICL resolution remain poorly defined. Here, we uncover an indispensable role of SCAI in ensuring error-free ICL repair upon activation of the FA pathway. We show that SCAI forms a complex with Polζ and localizes to ICLs during DNA replication. SCAI-deficient cells are exquisitely sensitive to ICL-inducing drugs and display major hallmarks of FA gene inactivation. In the absence of SCAI, HR-mediated ICL repair is defective, and breaks are instead re-ligated by polymerase θ-dependent microhomology-mediated end-joining, generating deletions spanning the ICL site and radial chromosomes. Our work establishes SCAI as an integral FA pathway component, acting at the interface between TLS and HR to promote error-free ICL repair.

摘要

DNA 链间交联 (ICLs) 是威胁基因组完整性的细胞毒性损伤。范可尼贫血 (FA) 途径在 DNA 复制过程中协调 ICL 修复,泛素化的 FANCI-FANCD2(ID2)标记激活步骤,该步骤触发 DNA 上的切口以解开 ICL。完整 DNA 的恢复需要聚合酶 ζ (Polζ) 介导的跨损伤合成 (TLS) 和同源重组 (HR) 的协调作用。虽然介导 FA 途径激活的蛋白质已经得到很好的描述,但调节修复途径选择以促进无差错 ICL 分辨率的效应物仍未明确定义。在这里,我们揭示了 SCAI 在 FA 途径激活时确保无差错 ICL 修复中的不可或缺作用。我们表明,SCAI 在 DNA 复制期间与 Polζ 形成复合物并定位于 ICL 处。缺乏 SCAI 的细胞对 ICL 诱导药物非常敏感,并显示出 FA 基因失活的主要特征。在没有 SCAI 的情况下,HR 介导的 ICL 修复有缺陷,而是通过依赖聚合酶θ的微同源介导的末端连接重新连接,产生跨越 ICL 位点和放射状染色体的缺失。我们的工作确立了 SCAI 作为 FA 途径的一个组成部分,在 TLS 和 HR 之间的界面上发挥作用,以促进无差错的 ICL 修复。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9cf2/8982572/4d66e0e3b0a1/EMBR-23-e53639-g008.jpg

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