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砷诱导的 GADD45α 积累和细胞凋亡中 p53 对 IKKβ 的转录抑制作用。

Transcriptional repression of IKKβ by p53 in arsenite-induced GADD45α accumulation and apoptosis.

机构信息

Department of Neuroimmunology, Beijing Institute of Brain Sciences, 27 Taiping Road, Beijing, 100850, China.

Department of Dermatology, The 309 Hospital of PLA, 17 Heishanhu Street, Beijing, 100091, P. R. China.

出版信息

Oncogene. 2019 Jan;38(5):731-746. doi: 10.1038/s41388-018-0478-7. Epub 2018 Sep 3.

DOI:10.1038/s41388-018-0478-7
PMID:30177839
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC6355650/
Abstract

Our previous studies revealed that GADD45α is a liable protein, which undergoes MDM2-dependent constitutive ubiquitination and degradation in resting HepG2 hepatoma cells. Arsenite exposure induces ribosomal stress responses mediated by the ribosomal protein S7, which can block MDM2 activity and result in GADD45α accumulation and cell apoptosis. In the present study, we found that one of the catalytic subunits of IκB kinase (IKK), IKKβ, exerted a novel IKKα- and NF-κB-independent function in stabilizing MDM2 and therefore contributed to ubiquitination-dependent degradation of GADD45α in resting HepG2 cells. Arsenite stimulation induced transactivation of p53, which formed a complex with its downstream target, Ets-1, and then synergistically repressed IKKβ transcription, reduced MDM2 stability, and ultimately removed the inhibitory effect of MDM2 on GADD45α induction. In addition, DAPK1 functioned as an upstream protein kinase triggering p53/Ets-1-dependent IKKβ and MDM2 reduction and GADD45α accumulation, thus promoting apoptosis in HepG2 cells. Subsequent studies further revealed that the activation of the DAPK1/p53/Ets-1/IKKβ/MDM2/GADD45α cascade was a common signaling event in mediating apoptosis of diverse cancer cells induced by arsenite and other tumor therapeutic agents. Therefore, we conclude that data in the current study have revealed a novel role for IKKβ in negatively regulating GADD45α protein stability and the contribution of p53-dependent IKKβ reduction to mediating cancer cell apoptosis.

摘要

我们之前的研究表明,GADD45α 是一种易变的蛋白,在静止的 HepG2 肝癌细胞中,它会经历 MDM2 依赖性的组成型泛素化和降解。砷暴露会诱导核糖体蛋白 S7 介导的核糖体应激反应,从而阻断 MDM2 活性,导致 GADD45α 积累和细胞凋亡。在本研究中,我们发现 IκB 激酶 (IKK) 的一个催化亚基 IKKβ 在稳定 MDM2 方面发挥了一种新的 IKKα 和 NF-κB 非依赖性功能,因此有助于静止的 HepG2 细胞中 GADD45α 的泛素化依赖性降解。砷刺激诱导了 p53 的反式激活,它与下游靶标 Ets-1 形成复合物,然后协同抑制 IKKβ 转录,降低 MDM2 稳定性,最终消除了 MDM2 对 GADD45α 诱导的抑制作用。此外,DAPK1 作为一种上游蛋白激酶发挥作用,触发 p53/Ets-1 依赖性 IKKβ 和 MDM2 的减少以及 GADD45α 的积累,从而促进 HepG2 细胞凋亡。随后的研究进一步表明,DAPK1/p53/Ets-1/IKKβ/MDM2/GADD45α 级联的激活是介导砷和其他肿瘤治疗剂诱导的多种癌细胞凋亡的共同信号事件。因此,我们得出结论,本研究的数据揭示了 IKKβ 在负调控 GADD45α 蛋白稳定性方面的新作用,以及 p53 依赖性 IKKβ 减少对介导癌细胞凋亡的贡献。

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