Department of Immunology and Genomic Medicine, Graduate School of Medicine, Kyoto University, Kyoto, Japan.
BioMedicine Design, Pfizer Inc., Cambridge, MA, USA.
EMBO J. 2021 Jun 15;40(12):e106393. doi: 10.15252/embj.2020106393. Epub 2021 May 3.
Antibody class switch recombination (CSR) is a locus-specific genomic rearrangement mediated by switch (S) region transcription, activation-induced cytidine deaminase (AID)-induced DNA breaks, and their resolution by non-homologous end joining (NHEJ)-mediated DNA repair. Due to the complex nature of the recombination process, numerous cofactors are intimately involved, making it important to identify rate-limiting factors that impact on DNA breaking and/or repair. Using an siRNA-based loss-of-function screen of genes predicted to encode PHD zinc-finger-motif proteins, we identify the splicing factor Phf5a/Sf3b14b as a novel modulator of the DNA repair step of CSR. Loss of Phf5a severely impairs AID-induced recombination, but does not perturb DNA breaks and somatic hypermutation. Phf5a regulates NHEJ-dependent DNA repair by preserving chromatin integrity to elicit optimal DNA damage response and subsequent recruitment of NHEJ factors at the S region. Phf5a stabilizes the p400 histone chaperone complex at the locus, which in turn promotes deposition of H2A variant such as H2AX and H2A.Z that are critical for the early DNA damage response and NHEJ, respectively. Depletion of Phf5a or p400 blocks the repair of both AID- and I-SceI-induced DNA double-strand breaks, supporting an important contribution of this axis to programmed as well as aberrant recombination.
抗体类别转换重组(CSR)是一种由开关(S)区域转录、激活诱导的胞嘧啶脱氨酶(AID)诱导的 DNA 断裂以及非同源末端连接(NHEJ)介导的 DNA 修复介导的基因座特异性基因组重排。由于重组过程的复杂性,许多共因子密切参与其中,因此确定影响 DNA 断裂和/或修复的限速因素非常重要。我们使用基于 siRNA 的基因敲低功能筛选,这些基因预测编码 PHF5A/SF3B14B 剪接因子作为 CSR 中 DNA 修复步骤的新型调节剂。Phf5a 的缺失严重损害了 AID 诱导的重组,但不会扰乱 DNA 断裂和体细胞超突变。Phf5a 通过保持染色质完整性来调节 NHEJ 依赖性 DNA 修复,以引发最佳的 DNA 损伤反应,并随后在 S 区募集 NHEJ 因子。Phf5a 稳定了该基因座上的 p400 组蛋白伴侣复合物,进而促进了 H2AX 和 H2A.Z 等 H2A 变体的沉积,这些变体对于早期的 DNA 损伤反应和 NHEJ 分别至关重要。Phf5a 或 p400 的缺失会阻止 AID 和 I-SceI 诱导的 DNA 双链断裂的修复,支持该轴对程序性和异常重组的重要贡献。