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首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >TDP-43 associates with stalled ribosomes and contributes to cell survival during cellular stress
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TDP-43 associates with stalled ribosomes and contributes to cell survival during cellular stress

机译:TDP-43与停滞的核糖体缔合,并在细胞应激期间有助于细胞存活

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TAR DNA-binding protein 43 (TDP-43) has emerged as an important contributor to amyotrophic lateral sclerosis and frontotemporal lobar degeneration. To understand the physiological roles of TDP-43 in the complex translational regulation mechanisms, we exposed cultured cells to oxidative stress induced by sodium arsenite (ARS) for different periods of time, leading to non-lethal or sublethal injury. Polysome profile analysis revealed that ARS-induced stress caused the association of TDP-43 with stalled ribosomes via binding to mRNA, which was not found under the steady-state condition. When the cells were exposed to short-termon-lethal stress, TDP-43 associating with ribosomes localized to stress granules (SGs); this association was transient because it was immediately dissolved by the removal of the stress. In contrast, when the cells were exposed to long-term/sublethal stress, TDP-43 was excluded from SGs and shifted to the heavy fractions independent of any binding to mRNA. In these severely stressed cells, biochemical alterations of TDP-43, such as increased insolubility and disulfide bond formation, were irreversible. TDP-43 was finally phosphorylated via the ARS-induced c-jun N-terminal kinase pathway. In TDP-43-silenced cells, stalled mRNA and poly (A)+ RNA stability was disturbed and cytotoxicity increased under sublethal stress. Thus, TDP-43 associates with stalled ribosomes and contributes to cell survival during cellular stress. TDP-43 is an important contributor to ALS and FTLD. In this study, we revealed that TDP-43 associates with stalled ribosomes and that its silencing disturbs mRNA stability and cell survival during cellular stress. Our findings suggest that TDP-43 is a stress-response protein that functions in translational control mechanisms and determines cell survival.
机译:TAR DNA结合蛋白43(TDP-43)已成为肌萎缩性侧索硬化和额颞叶变性的重要贡献者。为了了解TDP-43在复杂的翻译调控机制中的生理作用,我们将培养的细胞暴露于亚砷酸钠(ARS)诱导的氧化应激持续了不同的时间,导致非致死或亚致死性损伤。多核糖体谱分析表明,ARS诱导的应激通过与mRNA的结合而导致TDP-43与停滞的核糖体缔合,而在稳态条件下则没有发现。当细胞暴露于短期/非致死性压力时,TDP-43与定位于应激颗粒(SGs​​)的核糖体结合。这种联系是短暂的,因为它通过消除压力立即被溶解。相反,当细胞暴露于长期/亚致死应激时,TDP-43被排除在SGs外,并转移至重组分,而与mRNA的结合无关。在这些严重应激的细胞中,TDP-43的生化改变,例如不溶性增加和二硫键的形成是不可逆的。 TDP-43最终通过ARS诱导的c-jun N末端激酶途径被磷酸化。在TDP-43沉默的细胞中,停滞的mRNA和poly(A)+ RNA的稳定性受到干扰,并且在亚致死胁迫下细胞毒性增加。因此,TDP-43与停滞的核糖体缔合,并在细胞应激期间有助于细胞存活。 TDP-43是ALS和FTLD的重要贡献者。在这项研究中,我们揭示了TDP-43与停滞的核糖体相关,并且其沉默会干扰细胞应激期间的mRNA稳定性和细胞存活。我们的发现表明,TDP-43是一种应激反应蛋白,在翻译控制机制中起作用并决定细胞存活。

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