首页> 美国卫生研究院文献>The Journal of Biological Chemistry >TRAF Family Member-associated NF-κB Activator (TANK) Inhibits Genotoxic Nuclear Factor κB Activation by Facilitating Deubiquitinase USP10-dependent Deubiquitination of TRAF6 Ligase
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TRAF Family Member-associated NF-κB Activator (TANK) Inhibits Genotoxic Nuclear Factor κB Activation by Facilitating Deubiquitinase USP10-dependent Deubiquitination of TRAF6 Ligase

机译:TRAF家庭成员相关的NF-κB激活剂(TANK)通过促进TRAF6连接酶的去泛素酶USP10依赖性去泛素化抑制基因毒性核因子κB激活。

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摘要

DNA damage-induced NF-κB activation plays a critical role in regulating cellular response to genotoxic stress. However, the molecular mechanisms controlling the magnitude and duration of this genotoxic NF-κB signaling cascade are poorly understood. We recently demonstrated that genotoxic NF-κB activation is regulated by reversible ubiquitination of several essential mediators involved in this signaling pathway. Here we show that TRAF family member-associated NF-κB activator (TANK) negatively regulates NF-κB activation by DNA damage via inhibiting ubiquitination of TRAF6. Despite the lack of a deubiquitination enzyme domain, TANK has been shown to negatively regulate the ubiquitination of TRAF proteins. We found TANK formed a complex with MCPIP1 (also known as ZC3H12A) and a deubiquitinase, USP10, which was essential for the USP10-dependent deubiquitination of TRAF6 and the resolution of genotoxic NF-κB activation upon DNA damage. Clustered regularly interspaced short palindromic repeats (CRISPR)/Cas9-mediated deletion of TANK in human cells significantly enhanced NF-κB activation by genotoxic treatment, resulting in enhanced cell survival and increased inflammatory cytokine production. Furthermore, we found that the TANK-MCPIP1-USP10 complex also decreased TRAF6 ubiquitination in cells treated with IL-1β or LPS. In accordance, depletion of USP10 enhanced NF-κB activation induced by IL-1β or LPS. Collectively, our data demonstrate that TANK serves as an important negative regulator of NF-κB signaling cascades induced by genotoxic stress and IL-1R/Toll-like receptor stimulation in a manner dependent on MCPIP1/USP10-mediated TRAF6 deubiquitination.
机译:DNA损伤诱导的NF-κB活化在调节细胞对遗传毒性胁迫的反应中起着关键作用。然而,对这种遗传毒性NF-κB信号级联反应的大小和持续时间的分子机制了解甚少。最近,我们证明了遗传毒性NF-κB的激活是由参与该信号通路的几种基本介体的可逆泛素化调节的。在这里,我们显示TRAF家族成员相关的NF-κB激活剂(TANK)通过抑制TRAF6的泛素化,通过DNA损伤负调节NF-κB激活。尽管缺乏去泛素化酶结构域,但TANK已显示出负调控TRAF蛋白的泛素化作用。我们发现,TANK与MCPIP1(也称为ZC3H12A)和去泛素酶USP10形成了复合物,这对于依赖USP10的TRAF6去泛素化以及解决DNA损伤时遗传毒性NF-κB激活是必不可少的。通过基因毒性治疗,在人细胞中成簇的规则间隔的短回文重复序列(CRISPR)/ Cas9介导的TANK缺失通过基因毒性处理显着增强了NF-κB活化,从而导致细胞存活率提高和炎性细胞因子产生增加。此外,我们发现,TANK-MCPIP1-USP10复合物还降低了用IL-1β或LPS处理的细胞中的TRAF6泛素化。相应地,USP10的消耗增强了IL-1β或LPS诱导的NF-κB活化。总的来说,我们的数据表明,TANK以依赖MCPIP1 / USP10介导的TRAF6去泛素化作用,作为遗传毒性应激和IL-1R / Toll样受体刺激诱导的NF-κB信号级联反应的重要负调控因子。

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