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ATM 依赖性的 Nemo SQ 基序磷酸化对于 Nemo 介导的 DNA 双链断裂反应中的基因表达变化是可有可无的。

ATM-dependent Phosphorylation of Nemo SQ Motifs Is Dispensable for Nemo-mediated Gene Expression Changes in Response to DNA Double-Strand Breaks.

机构信息

Cell and Molecular Biology Graduate Group, Perelman School of Medicine, University of Pennsylvania, Philadelphia, PA.

Department of Pathology and Laboratory Medicine, Children's Hospital of Philadelphia, Perelman School of Medicine, University of Pennsylvania, Philadelphia, PA.

出版信息

J Immunol. 2024 Sep 1;213(5):628-640. doi: 10.4049/jimmunol.2300139.

Abstract

In response to DNA double-strand breaks (DSBs), the ATM kinase activates NF-κB factors to stimulate gene expression changes that promote survival and allow time for cells to repair damage. In cell lines, ATM can activate NF-κB transcription factors via two independent, convergent mechanisms. One is ATM-mediated phosphorylation of nuclear NF-κB essential modulator (Nemo) protein, which leads to monoubiquitylation and export of Nemo to the cytoplasm where it engages the IκB kinase (IKK) complex to activate NF-κB. Another is DSB-triggered migration of ATM into the cytoplasm, where it promotes monoubiquitylation of Nemo and the resulting IKK-mediated activation of NF-κB. ATM has many other functions in the DSB response beyond activation of NF-κB, and Nemo activates NF-κB downstream of diverse stimuli, including developmental or proinflammatory stimuli such as LPSs. To elucidate the in vivo role of DSB-induced, ATM-dependent changes in expression of NF-κB-responsive genes, we generated mice expressing phosphomutant Nemo protein lacking consensus SQ sites for phosphorylation by ATM or related kinases. We demonstrate that these mice are viable/healthy and fertile and exhibit overall normal B and T lymphocyte development. Moreover, treatment of their B lineage cells with LPS induces normal NF-κB-regulated gene expression changes. Furthermore, in marked contrast to results from a pre-B cell line, primary B lineage cells expressing phosphomutant Nemo treated with the genotoxic drug etoposide induce normal ATM- and Nemo-dependent changes in expression of NF-κB-regulated genes. Our data demonstrate that ATM-dependent phosphorylation of Nemo SQ motifs in vivo is dispensable for DSB-signaled changes in expression of NF-κB-regulated genes.

摘要

针对 DNA 双链断裂(DSB),ATM 激酶激活 NF-κB 因子,以刺激促进存活和为细胞修复损伤争取时间的基因表达变化。在细胞系中,ATM 可以通过两种独立的会聚机制激活 NF-κB 转录因子。一种是 ATM 介导的核 NF-κB 必需调节剂(Nemo)蛋白的磷酸化,导致 Nemo 的单泛素化和向细胞质的输出,在细胞质中,它与 IκB 激酶(IKK)复合物结合以激活 NF-κB。另一种是 DSB 触发的 ATM 向细胞质中的迁移,在细胞质中,它促进 Nemo 的单泛素化,以及由此产生的 IKK 介导的 NF-κB 激活。除了激活 NF-κB 之外,ATM 在 DSB 反应中还有许多其他功能,而 Nemo 可以激活 NF-κB 下游的各种刺激,包括发育或促炎刺激,如 LPS。为了阐明 DSB 诱导的、ATM 依赖性的 NF-κB 反应基因表达变化的体内作用,我们生成了表达磷酸突变 Nemo 蛋白的小鼠,该蛋白缺乏 ATM 或相关激酶磷酸化的共识 SQ 位点。我们证明这些小鼠具有活力/健康和生育能力,并且表现出总体正常的 B 和 T 淋巴细胞发育。此外,用 LPS 处理它们的 B 细胞系诱导正常的 NF-κB 调节基因表达变化。此外,与前 B 细胞系的结果形成鲜明对比的是,用致突变药物依托泊苷处理表达磷酸突变 Nemo 的原代 B 细胞系诱导正常的 ATM 和 Nemo 依赖性 NF-κB 调节基因表达变化。我们的数据表明,体内 Nemo SQ 基序的 ATM 依赖性磷酸化对于 DSB 信号诱导的 NF-κB 调节基因表达变化是可有可无的。

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