Genome Integrity and Structural Biology Laboratory, National Institute of Environmental Health Sciences, NIH, Research Triangle Park, NC, 27709, USA.
Sci Rep. 2021 Apr 27;11(1):9046. doi: 10.1038/s41598-021-88400-7.
Human Nbs1, a component of the MRN complex involved in DNA double strand break repair, contains a concatenated N-terminal FHA-BRCT1/2 sequence that supports interaction with multiple phosphopeptide binding partners. MDC1 binding localizes Nbs1 to the damage site, while binding of CDK-phosphorylated CtIP activates additional ATM-dependent CtIP phosphorylation, modulating substrate-dependent resection. We have investigated the phosphopeptide binding characteristics of Nbs1 BRCT1/2 based on a molecular modeling approach that revealed structural homology with the tandem TopBP1 BRCT7/8 domains. Relevance of the model was substantiated by the ability of TopBP1-binding FANCJ phosphopeptide to interact with hsNbsBRCT1/2, albeit with lower affinity. The modeled BRCT1/2 is characterized by low pSer/pThr selectivity, preference for a cationic residue at the + 2 position, and an inter-domain binding cleft selective for hydrophobic residues at the + 3/ + 4 positions. These features provide insight into the basis for interaction of SDT motifs with the BRCT1/2 domains and allowed identification of CtIP pSer347- and pThr847-containing phosphopeptides as high and lower affinity ligands, respectively. Among other binding partners considered, rodent XRCC1 contains an SDT sequence in the second linker consistent with high-affinity Nbs1 binding, while human XRCC1 lacks this motif, but contains other phosphorylated sequences that exhibit low-affinity binding.
人 Nbs1 是参与 DNA 双链断裂修复的 MRN 复合物的一个组成部分,包含串联的 N 端 FHA-BRCT1/2 序列,支持与多个磷酸肽结合伙伴相互作用。MDC1 的结合将 Nbs1 定位到损伤部位,而 CDK 磷酸化的 CtIP 的结合激活额外的 ATM 依赖性 CtIP 磷酸化,调节底物依赖性的切除。我们已经基于分子建模方法研究了 Nbs1 BRCT1/2 的磷酸肽结合特性,该方法揭示了与串联 TopBP1 BRCT7/8 结构域的结构同源性。该模型的相关性得到了证实,即 TopBP1 结合 FANCJ 磷酸肽能够与 hsNbsBRCT1/2 相互作用,尽管亲和力较低。建模的 BRCT1/2 的特征是低 pSer/pThr 选择性、对+2 位正离子残基的偏好以及对+3/+4 位疏水性残基的域间结合裂隙的选择性。这些特征提供了对 SDT 基序与 BRCT1/2 结构域相互作用基础的深入了解,并允许鉴定包含 CtIP pSer347 和 pThr847 的磷酸肽分别作为高亲和和低亲和配体。在所考虑的其他结合伙伴中,啮齿动物 XRCC1 在第二个连接子中含有一个 SDT 序列,与高亲和力的 Nbs1 结合一致,而人 XRCC1 缺乏该基序,但含有其他表现出低亲和力结合的磷酸化序列。