DNA Repair (Amst). 2013 Dec;12(12):1105-13. doi: 10.1016/j.dnarep.2013.08.015.
The function of X-ray cross complementing group 1 protein (XRCC1), a scaffold that binds to DNA repair enzymes involved in single-strand break and base excision repair, requires that it be recruited to sites of damaged DNA. However, structural insights into this recruitment are currently limited. Sequence analysis of the first unstructured linker domain of XRCC1 identifies a segment consistent with a possible REV1 interacting region (X1RIR) motif. The X1RIR motif is present in translesion polymerases that can be recruited to the pol /REV1 DNA repair complex via a specific interaction with the REV1 C-terminal domain. NMR and fluorescence titration studies were performed on XRCC1-derived peptides containing this putative RIR motif in order to evaluate the binding affinity for the REV1 C-terminal domain. These studies demonstrate an interaction of the XRCC1-derived peptide with the human REV1 C-terminal domain characterized by dissociation constants in the low micromolar range. Ligand competition studies comparing the XRCC1 RIR peptide with previously studied RIR peptides were found to be inconsistent with the NMR based Kd values. These discrepancies were resolved using a fluorescence assay for which the RIR–REV1 system is particularly well suited. The structure of a REV1-XRCC1 peptide complex was determined by using NOE restraints to dock the unlabeled XRCC1 peptide with a labeled REV1 C-terminal domain. The structure is generally homologous with previously determined complexes with the pol κ and pol η RIR peptides, although the helical segment in XRCC1 is shorter than was observed in these cases. These studies suggest the possible involvement of XRCC1 and its associated repair factors in post replication repair.
X 射线交错互补群 1 蛋白(XRCC1)的功能是作为一种支架,结合参与单链断裂和碱基切除修复的 DNA 修复酶,这需要它被招募到受损 DNA 的部位。然而,目前对这种招募的结构见解是有限的。对 XRCC1 的第一个无结构连接子结构域的序列分析,确定了一个与可能的 REV1 相互作用区域(X1RIR)基序一致的片段。该 X1RIR 基序存在于可以通过与 REV1 C 端结构域的特定相互作用招募到 pol/REV1 DNA 修复复合物的跨损伤聚合酶中。进行了针对包含该假定 RIR 基序的 XRCC1 衍生肽的 NMR 和荧光滴定研究,以评估其与 REV1 C 端结构域的结合亲和力。这些研究表明,XRCC1 衍生肽与人类 REV1 C 端结构域之间存在相互作用,其解离常数在低微摩尔范围内。与先前研究的 RIR 肽相比,对 XRCC1 RIR 肽的配体竞争研究发现与基于 NMR 的 Kd 值不一致。这些差异通过荧光测定法得到解决,该方法特别适合 RIR-REV1 系统。通过使用未标记的 XRCC1 肽与标记的 REV1 C 端结构域对接,使用 NOE 限制来确定 REV1-XRCC1 肽复合物的结构。该结构与先前与 pol κ 和 pol η RIR 肽确定的复合物总体上同源,尽管 XRCC1 中的螺旋片段比在这些情况下观察到的要短。这些研究表明,XRCC1 及其相关的修复因子可能参与了复制后修复。