Department of Biochemistry and Molecular Biology, University of Oklahoma Health Sciences Center, Oklahoma City, United States.
Department of Biochemistry and Molecular Biology, University of Oklahoma Health Sciences Center, Oklahoma City, United States.
Immunobiology. 2021 May;226(3):152089. doi: 10.1016/j.imbio.2021.152089. Epub 2021 Apr 6.
V(D)J recombination by the RAG1 and RAG2 protein complex in developing lymphocytes includes DNA double strand break (DSB) intermediates. RAG2 undergoes export from the nucleus and enrichment at the centrosome minutes following production of DSBs by genotoxic stress, suggesting that RAG2 participates in cellular responses to DSBs such as those generated during V(D)J recombination. To determine the effect of RAG2 expression on cell viability following DSB generation, we measured pre-B cells that expressed either full length (FL) wild-type RAG2, or a T490A mutant of RAG2 that has increased stability and fails to undergo nuclear export following generation of DSBs. Each RAG2 construct was labeled with GFP at the N-terminus. Compared to the T490A mutant, cells expressing FL RAG2 exhibited elevated apoptosis by 24 h following irradiation, and this coincided with a greater amount of Caspase 3 cleavage measured in cell lysates. Pre-B cells expressing either RAG2 protein exhibited similar increases in phospho-p53 levels following irradiation. Interestingly, FL RAG2-expressing cells exhibited elevated division relative to the T490A clone beginning ~24 h following irradiation, as well as an increased percentage of cells proceeding through mitosis, suggesting an improved rate of recovery following the initial burst in apoptosis. Altogether, these data show that FL RAG2, but not its stable nuclear export-defective T490A mutant, participates in pre-B cell decisions between apoptosis versus DNA repair and cell cycle progression following DNA damage.
RAG1 和 RAG2 蛋白复合物在发育中的淋巴细胞中进行 V(D)J 重组,包括 DNA 双链断裂 (DSB) 中间产物。RAG2 在产生 DSB 后几分钟内从核内输出并富集到中心体,这表明 RAG2 参与了细胞对 DSB 的反应,例如在 V(D)J 重组过程中产生的 DSB。为了确定 RAG2 表达对 DSB 产生后细胞活力的影响,我们测量了表达全长 (FL) 野生型 RAG2 或 RAG2 的 T490A 突变体的前 B 细胞,该突变体稳定性增加并且在产生 DSB 后不能进行核输出。每个 RAG2 构建体都在 N 端用 GFP 标记。与 T490A 突变体相比,在照射后 24 小时内,表达 FL RAG2 的细胞表现出更高的凋亡率,并且细胞裂解物中测量到的 Caspase 3 切割量更多。表达任何一种 RAG2 蛋白的前 B 细胞在照射后均表现出磷酸化 p53 水平的相似增加。有趣的是,与 T490A 克隆相比,FL RAG2 表达细胞在照射后约 24 小时开始表现出更高的分裂率,并且通过有丝分裂的细胞比例增加,表明在最初的凋亡爆发后恢复速度提高。总的来说,这些数据表明,FL RAG2 而不是其稳定的核输出缺陷型 T490A 突变体,参与了前 B 细胞在凋亡与 DNA 修复和细胞周期进程之间的决策,以应对 DNA 损伤。