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TRIM16 governs the biogenesis and disposal of stress-induced protein aggregates to evade cytotoxicity: implication for neurodegeneration and cancer

机译:Trim16治理应激诱导的蛋白质聚集体的生物发生和处理,以逃避细胞毒性:对神经变性和癌症的影响

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The formation of protein aggregates is linked to several diseases collectively called proteinopathies. The mechanisms and the molecular players that control the turnover of protein aggregates are not well defined. We recently showed that TRIM16 acts as a key regulatory protein to control the biogenesis and degradation of protein aggregates. We show that TRIM16 interacts with, enhances K63-linked ubiquitination of, and stabilizes NFE2L2/NRF2 leading to its activation. The activated NFE2L2 upregulates the SQSTM1/p62 and ubiquitin pathway proteins, which interact with and ubiquitinate the misfolded proteins resulting in protein aggregate formation. TRIM16 is physically present around the protein aggregates and acts as a scaffold protein to recruit SQSTM1 and macroautophagy/autophagy initiation proteins for sequestration of the protein aggregates within autophagosomes, leading to their degradation. Hence, TRIM16 utilizes a two-pronged approach to safely dispose of the stress-induced misfolded proteins and protein aggregates, and protect cells from oxidative and proteotoxic stresses. This study could provide a framework for understanding the mechanisms of protein aggregate formation in neurodegeneration. The enhancement of TRIM16 activity could be a beneficial therapeutic approach in proteinopathies. On the flip side, cancer cells appear to hijack this machinery for their survival under stress conditions; hence, depleting TRIM16 could be a beneficial therapeutic strategy for treating cancer.
机译:蛋白质聚集体的形成与统称蛋白质分析的几种疾病联系起来。控制蛋白质聚集体溢出的机制和分子参与者没有明确定义。我们最近表明Trim16充当关键调节蛋白,以控制蛋白质聚集体的生物发生和降解。我们表明Trim16与之相互作用,增强K63连接的泛素化,并稳定NFE2L2 / NRF2导致其活化。活化的NFE2L2上调了SQSTM1 / P62和泛素途径蛋白,其与蛋白质聚集体形成的错配蛋白相互作用。 Trim16在蛋白质聚集体周围物理存在,并用作支架蛋白质,以募集SQSTM1和宏观摄入/自噬引发蛋白,用于在自噬体内螯合蛋白质聚集体,导致其降解。因此,Trim16利用双管齐下的方法来安全地处理应激诱导的错误折叠蛋白质和蛋白质聚集体,并保护细胞免受氧化和蛋白毒性应力的影响。本研究可以提供理解神经变性蛋白质骨料形成机制的框架。 Trim16活性的增强可能是蛋白质病的有益治疗方法。在侧面,癌细胞似乎在压力条件下劫持此机器的存活;因此,耗尽汤16可以是治疗癌症的有益治疗策略。

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