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An acetylation switch controls TDP-43 function and aggregation propensity

机译:乙酰化开关控制TDP-43的功能和聚集倾向

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TDP-43 pathology is a disease hallmark that characterizes amyotrophic lateral sclerosis (ALS) and frontotemporal lobar degeneration (FTLD-TDP). Although a critical role for TDP-43 as an RNA-binding protein has emerged, the regulation of TDP-43 function is poorly understood. Here, we identify lysine acetylation as a novel post-translational modification controlling TDP-43 function and aggregation. We provide evidence that TDP-43 acetylation impairs RNA binding and promotes accumulation of insoluble, hyper-phosphorylated TDP-43 species that largely resemble pathological inclusions in ALS and FTLD-TDP. Moreover, biochemical and cell-based assays identify oxidative stress as a signalling cue that promotes acetylated TDP-43 aggregates that are readily engaged by the cellular defense machinery. Importantly, acetylated TDP-43 lesions are found in ALS patient spinal cord, indicating that aberrant TDP-43 acetylation and loss of RNA binding are linked to TDP-43 proteinopathy. Thus, modulating TDP-43 acetylation represents a plausible strategy to fine-tune TDP-43 activity, which could provide new therapeutic avenues for TDP-43 proteinopathies.
机译:TDP-43病理学是特征性肌萎缩性侧索硬化症(ALS)和额颞叶变性(FTLD-TDP)的疾病标志。尽管已经出现了TDP-43作为一种RNA结合蛋白的关键作用,但对TDP-43功能的调节却知之甚少。在这里,我们确定赖氨酸乙酰化为控制TDP-43功能和聚集的新型翻译后修饰。我们提供的证据表明,TDP-43乙酰化会损害RNA结合并促进不溶性,高磷酸化TDP-43物种的积累,这些物种在很大程度上类似于ALS和FTLD-TDP中的病理包裹体。此外,生化和基于细胞的测定法将氧化应激鉴定为信号提示,可促进乙酰化的TDP-43聚集体易于被细胞防御机制参与。重要的是,在ALS患者的脊髓中发现了乙酰化的TDP-43损伤,这表明异常的TDP-43乙酰化和RNA结合的丧失与TDP-43蛋白病有关。因此,调节TDP-43乙酰化代表了一种微调TDP-43活性的可行策略,该策略可为TDP-43蛋白质病提供新的治疗途径。

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