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HuR/ELAVL1 在抗体多样性中诱导型胞苷脱氨酶依赖的拓扑异构酶 1 减少中的必要性。

Necessity of HuR/ELAVL1 for the activation-induced cytidine deaminase-dependent decrease in topoisomerase 1 in antibody diversification.

机构信息

Department of Immunology and Genomic Medicine, Center for Cancer Immunotherapy and Immunobiology, Graduate School of Medicine, Kyoto University, 606-8501, Kyoto, Japan.

出版信息

Int Immunol. 2023 Aug 7;35(8):361-375. doi: 10.1093/intimm/dxad011.

Abstract

Activation-induced cytidine deaminase (AID)-dependent DNA cleavage is the initial event of antibody gene-diversification processes such as class switch recombination (CSR) and somatic hypermutation (SHM). We previously reported the requirement of an AID-dependent decrease of topoisomerase 1 (Top1) for efficient DNA cleavage, but the underlying molecular mechanism has remained elusive. This study focuses on HuR/ELAVL1, a protein that binds to AU-rich elements in RNA. HuR-knockout (KO) CH12 cells derived from murine B lymphoma cells were found to have lower CSR and hypermutation efficiencies due to decreased AID-dependent DNA cleavage levels. The HuR-KO CH12 cells do not show impairment in cell cycles and Myc expression, which have been reported in HuR-reduced spleen B cells. Furthermore, drugs that scavenge reactive oxygen species (ROS) do not rescue the lower CSR in HuR-KO CH12 cells, meaning that ROS or decreased c-Myc protein amount is not the reason for the deficiencies of CSR and hypermutation in HuR-KO CH12 cells. We show that HuR binds to Top1 mRNA and that complete deletion of HuR abolishes AID-dependent repression of Top1 protein synthesis in CH12 cells. Additionally, reduction of CSR to IgG3 in HuR-KO cells is rescued by knockdown of Top1, indicating that elimination of the AID-dependent Top1 decrease is the cause of the inefficiency of DNA cleavage, CSR and hypermutation in HuR-KO cells. These results show that HuR is required for initiation of antibody diversification and acquired immunity through the regulation of AID-dependent DNA cleavage by repressing Top1 protein synthesis.

摘要

激活诱导胞嘧啶脱氨酶 (AID) 依赖性 DNA 断裂是抗体基因多样化过程(如类别转换重组 (CSR) 和体细胞高频突变 (SHM))的初始事件。我们之前报道了 AID 依赖性拓扑异构酶 1 (Top1) 减少对于有效 DNA 断裂的必要性,但潜在的分子机制仍不清楚。本研究重点关注 HuR/ELAVL1,一种结合 RNA 中富含 AU 元件的蛋白质。我们发现,源自鼠 B 淋巴瘤细胞的 HuR 敲除 (KO) CH12 细胞由于 AID 依赖性 DNA 断裂水平降低,CSR 和超突变效率较低。HuR-KO CH12 细胞未显示细胞周期和 Myc 表达受损,这已在 HuR 减少的脾 B 细胞中报道过。此外,清除活性氧 (ROS) 的药物不能挽救 HuR-KO CH12 细胞中较低的 CSR,这意味着 ROS 或减少的 c-Myc 蛋白量不是 HuR-KO CH12 细胞 CSR 和超突变缺陷的原因。我们表明 HuR 结合到 Top1 mRNA 上,并且 HuR 的完全缺失消除了 CH12 细胞中 AID 依赖性 Top1 蛋白合成的抑制。此外,HuR-KO 细胞中 IgG3 的 CSR 减少通过 Top1 的敲低得到挽救,表明消除 AID 依赖性 Top1 减少是导致 HuR-KO 细胞中 DNA 断裂、CSR 和超突变效率降低的原因。这些结果表明,HuR 通过抑制 Top1 蛋白合成来调节 AID 依赖性 DNA 断裂,从而在抗体多样化和获得性免疫的起始中发挥作用。

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