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首页> 外文期刊>Nucleic acids research >Ribosomal protein S7 regulates arsenite-induced GADD45α expression by attenuating MDM2-mediated GADD45α ubiquitination and degradation
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Ribosomal protein S7 regulates arsenite-induced GADD45α expression by attenuating MDM2-mediated GADD45α ubiquitination and degradation

机译:核糖体蛋白S7通过减弱MDM2介导的GADD45α泛素化和降解来调节砷诱导的GADD45α表达

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摘要

The stress-responding protein, GADD45α, plays important roles in cell cycle checkpoint, DNA repair and apoptosis. In our recent study, we demonstrate that GADD45α undergoes a dynamic ubiquitination and degradation in vivo, which process can be blocked by the cytotoxic reagent, arsenite, resulting in GADD45α accumulation to activate JNKs cell death pathway, thereby revealing a novel mechanism for the cellular GADD45α functional regulation. But the factors involved in GADD45α stability modulations are unidentified. Here, we demonstrated that MDM2 was an E3 ubiquitin ligase for GADD45α. One of MDM2-binding partner, ribosomal protein S7, interacted with and stabilized GADD45α through preventing the ubiquitination and degradation of GADD45α mediated by MDM2. This novel function of S7 is unrelated to p53 but seems to depend on S7/MDM2 interaction, for the S7 mutant lacking MDM2-binding ability lost its function to stabilize GADD45α. Further investigations indicated that arsenite treatment enhanced S7–MDM2 interaction, resulting in attenuation of MDM2-dependent GADD45α ubiquitination and degradation, thereby leading to GADD45α-dependent cell death pathway activation. Silencing S7 expression suppressed GADD45α-dependent cytotoxicity induced by arsenite. Our findings thus identify a novel function of S7 in control of GADD45α stabilization under both basal and stress conditions and its significance in mediating arsenite-induced cellular stress.
机译:应激反应蛋白GADD45α在细胞周期检查点,DNA修复和细胞凋亡中起着重要作用。在我们最近的研究中,我们证明GADD45α在体内经历了动态泛素化和降解,该过程可以被细胞毒性试剂亚砷酸盐阻滞,从而导致GADD45α积聚以激活JNKs细胞死亡途径,从而揭示了细胞GADD45α的新机制功能调节。但是涉及GADD45α稳定性调节的因素尚不清楚。在这里,我们证明了MDM2是GADD45α的E3泛素连接酶。 MDM2结合伴侣之一,核糖体蛋白S7,通过阻止MDM2介导的GADD45α的泛素化和降解,与GADD45α相互作用并使其稳定。 S7的这一新功能与p53无关,但似乎取决于S7 / MDM2的相互作用,因为缺乏MDM2结合能力的S7突变体失去了稳定GADD45α的功能。进一步的研究表明,亚砷酸盐处理增强了S7–MDM2的相互作用,导致MDM2依赖性GADD45α泛素化和降解作用减弱,从而导致GADD45α依赖性细胞死亡途径活化。沉默S7表达抑制了亚砷酸盐诱导的GADD45α依赖性细胞毒性。因此,我们的发现确定了在基础和胁迫条件下S7在控制GADD45α稳定中的新功能及其在介导砷诱导的细胞应激中的意义。

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