Laboratory of Molecular Gerontology, National Institute on Aging, NIH, Baltimore, MD 21224, USA.
Nucleic Acids Res. 2010 Aug;38(15):5023-35. doi: 10.1093/nar/gkq193. Epub 2010 Apr 12.
XRCC1 operates as a scaffold protein in base excision repair, a pathway that copes with base and sugar damage in DNA. Studies using recombinant XRCC1 proteins revealed that: a C389Y substitution, responsible for the repair defects of the EM-C11 CHO cell line, caused protein instability; a V86R mutation abolished the interaction with POLbeta, but did not disrupt the interactions with PARP-1, LIG3alpha and PCNA; and an E98K substitution, identified in EM-C12, reduced protein integrity, marginally destabilized the POLbeta interaction, and slightly enhanced DNA binding. Two rare (P161L and Y576S) and two frequent (R194W and R399Q) amino acid population variants had little or no effect on XRCC1 protein stability or the interactions with POLbeta, PARP-1, LIG3alpha, PCNA or DNA. One common population variant (R280H) had no pronounced effect on the interactions with POLbeta, PARP-1, LIG3alpha and PCNA, but did reduce DNA-binding ability. When expressed in HeLa cells, the XRCC1 variants-excluding E98K, which was largely nucleolar, and C389Y, which exhibited reduced expression-exhibited normal nuclear distribution. Most of the protein variants, including the V86R POLbeta-interaction mutant, displayed normal relocalization kinetics to/from sites of laser-induced DNA damage: except for E98K and C389Y, and the polymorphic variant R280H, which exhibited a slightly shorter retention time at DNA breaks.
XRCC1 作为碱基切除修复途径中的支架蛋白发挥作用,该途径可以应对 DNA 中的碱基和糖损伤。使用重组 XRCC1 蛋白的研究表明:导致 EM-C11 CHO 细胞系修复缺陷的 C389Y 取代导致蛋白质不稳定;V86R 突变消除了与 POLβ 的相互作用,但没有破坏与 PARP-1、LIG3α 和 PCNA 的相互作用;在 EM-C12 中发现的 E98K 取代降低了蛋白质完整性,略微不稳定了 POLβ 的相互作用,并略微增强了 DNA 结合。两种罕见(P161L 和 Y576S)和两种常见(R194W 和 R399Q)氨基酸群体变体对 XRCC1 蛋白稳定性或与 POLβ、PARP-1、LIG3α、PCNA 或 DNA 的相互作用几乎没有影响。一种常见的群体变体(R280H)对与 POLβ、PARP-1、LIG3α 和 PCNA 的相互作用没有明显影响,但确实降低了 DNA 结合能力。当在 HeLa 细胞中表达时,除了主要位于核仁的 E98K 和表达减少的 C389Y 外,XRCC1 变体表现出正常的核分布。除了 E98K 和 C389Y 以及多态性变体 R280H 外,大多数蛋白质变体,包括 V86R POLβ 相互作用突变体,都表现出正常的从激光诱导的 DNA 损伤部位的重新定位动力学:除了 E98K 和 C389Y 以及多态性变体 R280H 外,大多数蛋白质变体,包括 V86R POLβ 相互作用突变体,都表现出正常的从激光诱导的 DNA 损伤部位的重新定位动力学:除了 E98K 和 C389Y 以及多态性变体 R280H 外,大多数蛋白质变体,包括 V86R POLβ 相互作用突变体,都表现出正常的从激光诱导的 DNA 损伤部位的重新定位动力学