Graduate School of Advanced Science and Engineering, Waseda University, 2-2 Wakamatsu-cho, Shinjuku-ku, Tokyo 162-8480, Japan.
J Biochem. 2010 Jun;147(6):833-42. doi: 10.1093/jb/mvq020. Epub 2010 Feb 27.
RAD52, a key factor in homologous recombination (HR), plays important roles in both RAD51-dependent and -independent HR pathways. Several studies have suggested a link between the functional regulation of RAD52 and the protein modification by a small ubiquitin-like modifier (SUMO). However, the molecular mechanism underlying the regulation of RAD52 by SUMO is unknown. To begin investigating this mechanism, we identified possible target sites for sumoylation in the human RAD52 protein by preparing a RAD52-SUMO complex using an established Escherichia coli sumoylation system. Mass spectrometry and amino acid sequencing of the enzymatically digested fragments of the purified complex revealed that the putative nuclear localization signal located near the C terminus of RAD52 was sumoylated. Biochemical studies of the RAD52-SUMO complex suggested that sumoylation at the identified site has no apparent effect on the DNA binding, D-loop formation, ssDNA annealing and RAD51-binding activities of RAD52. On the other hand, visualization of the GFP-fused RAD52 protein in the human cell that contained mutations at the identified sumoylation sites showed clear differences in the cytosolic and nuclear distributions of the protein. These results suggest the possibility of sumoylation playing an important role in the nuclear transport of RAD52.
RAD52 是同源重组(HR)的关键因素,在 RAD51 依赖和非依赖 HR 途径中都发挥着重要作用。几项研究表明,RAD52 的功能调节与一种小泛素样修饰物(SUMO)的蛋白质修饰之间存在联系。然而,SUMO 对 RAD52 的调节的分子机制尚不清楚。为了开始研究这种机制,我们通过使用已建立的大肠杆菌 SUMO 化系统制备 RAD52-SUMO 复合物,鉴定了人 RAD52 蛋白中可能的 SUMO 化靶位点。对纯化复合物中酶切片段的质谱分析和氨基酸测序表明,RAD52 近 C 末端的假定核定位信号被 SUMO 化。RAD52-SUMO 复合物的生化研究表明,在鉴定的位点上的 SUMO 化对 RAD52 的 DNA 结合、D 环形成、ssDNA 退火和 RAD51 结合活性没有明显影响。另一方面,在含有鉴定的 SUMO 化位点突变的人细胞中观察到 GFP 融合的 RAD52 蛋白,显示出该蛋白在细胞质和核内分布的明显差异。这些结果表明 SUMO 化可能在 RAD52 的核转运中发挥重要作用。