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首页> 外文期刊>Human Molecular Genetics >Opposing roles of p38 and JNK in a Drosophila model of TDP-43 proteinopathy reveal oxidative stress and innate immunity as pathogenic components of neurodegeneration
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Opposing roles of p38 and JNK in a Drosophila model of TDP-43 proteinopathy reveal oxidative stress and innate immunity as pathogenic components of neurodegeneration

机译:p38和JNK在果蝇TDP-43蛋白病模型中的相反作用揭示了氧化应激和先天免疫是神经变性的致病成分

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Pathological aggregation and mutation of the 43-kDa TAR DNA-binding protein (TDP-43) are strongly implicated in the pathogenesis amyotrophic lateral sclerosis and frontotemporal lobar degeneration. TDP-43 neurotoxicity has been extensively modeled in mice, zebrafish, Caenorhabditis elegans and Drosophila, where selective expression of TDP-43 in motoneurons led to paralysis and premature lethality. Through a genetic screen aimed to identify genetic modifiers of TDP-43, we found that the Drosophila dual leucine kinase Wallenda (Wnd) and its downstream kinases JNK and p38 influenced TDP-43 neurotoxicity. Reducing Wnd gene dosage or over-expressing its antagonist highwire partially rescued TDP-43-associated premature lethality. Downstream of Wnd, the JNK and p38 kinases played opposing roles in TDP-43-associated neurodegeneration. LOF alleles of the p38b gene as well as p38 inhibitors diminished TDP-43-associated premature lethality, whereas p38b GOF caused phenotypic worsening. In stark contrast, disruptive alleles of Basket (Bsk), the Drosophila homologue of JNK, exacerbated longevity shortening, whereas overexpression of Bskextended lifespan. Among possible mechanisms, we found motoneuron-directed expression of TDP-43 elicited oxidative stress and innate immune gene activation that were exacerbated by p38 GOF and BskL0F, respectively. A key pathologic role for innate immunity in TDP-43-associated neurodegeneration was further supported by the finding that genetic suppression of the Toll/Dif and Imd/Relish inflammatory pathways dramatically extended lifespan of TDP-43 transgenic flies. We propose that oxidative stress and neuroinflammation are intrinsic components of TDP-43-associated neurodegeneration and that the balance between cytoprotective JNK and cytotoxic p38 signaling dictates phenotypic outcome to TDP-43 expression in Drosophila.
机译:43 kDa TAR DNA结合蛋白(TDP-43)的病理聚集和突变与肌萎缩性侧索硬化和额颞叶变性的发病机理密切相关。 TDP-43的神经毒性已在小鼠,斑马鱼,秀丽隐杆线虫和果蝇中得到了广泛的建模,其中TDP-43在运动神经元中的选择性表达导致瘫痪和过早的致死性。通过旨在鉴定TDP-43遗传修饰剂的遗传筛选,我们发现果蝇双重亮氨酸激酶Wallenda(Wnd)及其下游激酶JNK和p38影响了TDP-43的神经毒性。降低Wnd基因剂量或过表达其拮抗剂高线可部分挽救与TDP-43相关的过早杀伤力。在Wnd下游,JNK和p38激酶在TDP-43相关的神经变性中起相反的作用。 p38b基因的LOF等位基因以及p38抑制剂减少了TDP-43相关的过早杀伤力,而p38b GOF导致表型恶化。与之形成鲜明对比的是,Basket(Bsk)(JNK的果蝇同源物)的破坏性等位基因加剧了寿命的缩短,而Bsk的过度表达延长了其寿命。在可能的机制中,我们发现TDP-43的运动神经元定向表达引起氧化应激和先天免疫基因激活,分别被p38 GOF和BskL0F加剧。 Tll / Dif和Imd / Relish炎症途径的遗传抑制显着延长了TDP-43转基因果蝇的寿命,这一发现进一步支持了先天免疫在TDP-43相关的神经变性中的关键病理作用。我们建议氧化应激和神经炎症是TDP-43相关的神经变性的内在组成部分,并且细胞保护性JNK和细胞毒性p38信号之间的平衡决定了果蝇中TDP-43表达的表型结果。

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