首页> 外文期刊>Nature Communications >Regulation of PERK–eIF2α signalling by tuberous sclerosis complex-1 controls homoeostasis and survival of myelinating oligodendrocytes
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Regulation of PERK–eIF2α signalling by tuberous sclerosis complex-1 controls homoeostasis and survival of myelinating oligodendrocytes

机译:结节性硬化复合物-1对PERK–eIF2α信号的调控控制了髓鞘少突胶质细胞的同位稳态和存活

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Tuberous sclerosis complex-1 or 2 (TSC1/2) mutations cause white matter abnormalities, including myelin deficits in the CNS; however, underlying mechanisms are not fully understood. TSC1/2 negatively regulate the function of mTOR, which is required for oligodendrocyte differentiation. Here we report that, unexpectedly, constitutive activation of mTOR signalling by Tsc1 deletion in the oligodendrocyte lineage results in severe myelination defects and oligodendrocyte cell death in mice, despite an initial increase of oligodendrocyte precursors during early development. Expression profiling analysis reveals that Tsc1 ablation induces prominent endoplasmic reticulum (ER) stress responses by activating a PERK–eIF2α signalling axis and Fas–JNK apoptotic pathways. Enhancement of the phospho-eIF2α adaptation pathway by inhibition of Gadd34-PP1 phosphatase with guanabenz protects oligodendrocytes and partially rescues myelination defects in Tsc1 mutants. Thus, TSC1-mTOR signalling acts as an important checkpoint for maintaining oligodendrocyte homoeostasis, pointing to a previously uncharacterized ER stress mechanism that contributes to hypomyelination in tuberous sclerosis.
机译:结节性硬化复合物1或2(TSC1 / 2)突变会引起白质异常,包括中枢神经系统中的髓磷脂缺乏;但是,尚未完全理解其基本机制。 TSC1 / 2负调节mTOR的功能,这是少突胶质细胞分化所必需的。在这里我们报道,出人意料的是,尽管少突胶质细胞前体在初期发育过程中最初增加,但少突胶质细胞沿袭中Tsc1缺失的mTOR信号的组成性激活导致严重的髓鞘形成缺陷和少突胶质细胞死亡。表达谱分析表明,Tsc1切除可通过激活PERK-eIF2α信号轴和Fas-JNK凋亡途径诱导显着的内质网(ER)应激反应。通过胍巴胺抑制Gadd34-PP1磷酸酶增强磷酸-eIF2α适应途径可以保护少突胶质细胞并部分挽救Tsc1突变体的髓鞘形成缺陷。因此,TSC1-mTOR信号传导作为维持少突胶质细胞同质化的重要检查点,指出了先前未知的ER应激机制,该机制有助于结节性硬化症的低髓鞘形成。

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