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The molecular basis of ATM-dependent dimerization of the Mdc1 DNA damage checkpoint mediator

机译:Mdc1 DNA损伤检查点介体的ATM依赖二聚化的分子基础

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摘要

Mdc1 is a large modular phosphoprotein scaffold that maintains signaling and repair complexes at double-stranded DNA break sites. Mdc1 is anchored to damaged chromatin through interaction of its C-terminal BRCT-repeat domain with the tail of gamma H2AX following DNA damage, but the role of the N-terminal forkhead-associated (FHA) domain remains unclear. We show that a major binding target of the Mdc1 FHA domain is a previously unidentified DNA damage and ATM-dependent phosphorylation site near the N-terminus of Mdc1 itself. Binding to this motif stabilizes a weak self-association of the FHA domain to form a tight dimer. X-ray structures of free and complexed Mdc1 FHA domain reveal a 'head-to-tail' dimerization mechanism that is closely related to that seen in pre-activated forms of the Chk2 DNA damage kinase, and which both positively and negatively influences Mdc1 FHA domain-mediated interactions in human cells prior to and following DNA damage.
机译:Mdc1是大型模块化磷蛋白支架,可在双链DNA断裂位点维持信号传导和修复复合体。 Mdc1通过其C端BRCT重复域与DNA损伤后γH2AX尾部的相互作用而锚定在受损的染色质上,但N端叉头相关(FHA)域的作用仍不清楚。我们显示,Mdc1 FHA域的主要结合目标是以前未确定的DNA损伤和Mdc1本身的N末端附近的ATM依赖性磷酸化位点。与该基序的结合稳定了FHA结构域的弱自缔合以形成紧密的二聚体。自由和复杂的Mdc1 FHA结构域的X射线结构揭示了“从头到尾”的二聚化机制,该机制与在Chk2 DNA损伤激酶的预激活形式中看到的机制密切相关,并且对Mdc1 FHA产生正向和负面影响DNA损伤之前和之后,人类细胞中的区域介导的相互作用。

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