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首页> 外文期刊>Acta Neuropathologica Communications >Amyotrophic lateral sclerosis (ALS)-associated VAPB-P56S inclusions represent an ER quality control compartment
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Amyotrophic lateral sclerosis (ALS)-associated VAPB-P56S inclusions represent an ER quality control compartment

机译:肌萎缩性侧索硬化(ALS)相关的VAPB-P56S夹杂物代表ER质量控制室

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BackgroundProtein aggregation and the formation of intracellular inclusions are a central feature of many neurodegenerative disorders, but precise knowledge about their pathogenic role is lacking in most instances. Here we have characterized inclusions formed in transgenic mice carrying the P56S mutant form of VAPB that causes various motor neuron syndromes including ALS8. ResultsInclusions in motor neurons of VAPB-P56S transgenic mice are characterized by the presence of smooth ER-like tubular profiles, and are immunoreactive for factors that operate in the ER associated degradation (ERAD) pathway, including p97/VCP, Derlin-1, and the ER membrane chaperone BAP31. The presence of these inclusions does not correlate with signs of axonal and neuronal degeneration, and axotomy leads to their gradual disappearance, indicating that they represent reversible structures. Inhibition of the proteasome and knockdown of the ER membrane chaperone BAP31 increased the size of mutant VAPB inclusions in primary neuron cultures, while knockdown of TEB4, an ERAD ubiquitin-protein ligase, reduced their size. Mutant VAPB did not codistribute with mutant forms of seipin that are associated with an autosomal dominant motor neuron disease, and accumulate in a protective ER derived compartment termed ERPO (ER protective organelle) in neurons. ConclusionsThe data indicate that the VAPB-P56S inclusions represent a novel reversible ER quality control compartment that is formed when the amount of mutant VAPB exceeds the capacity of the ERAD pathway and that isolates misfolded and aggregated VAPB from the rest of the ER. The presence of this quality control compartment reveals an additional level of flexibility of neurons to cope with misfolded protein stress in the ER.
机译:背景蛋白聚集和细胞内包裹物的形成是许多神经退行性疾病的主要特征,但在大多数情况下仍缺乏有关其致病作用的确切知识。在这里,我们已经表征了携带VAPB的P56S突变体形式的转基因小鼠中形成的内含物,VAPB引起包括ALS8在内的各种运动神经元综合征。结果VAPB-P56S转基因小鼠运动神经元中的内含物具有平滑的ER样管状特征,并且对在ER相关降解(ERAD)途径中起作用的因子具有免疫反应性,包括p97 / VCP,Derlin-1和ER膜伴侣BAP31。这些内含物的存在与轴突和神经元变性的迹象无关,并且轴突切开导致其逐渐消失,表明它们代表可逆结构。蛋白酶体的抑制和ER膜伴侣BAP31的敲低增加了原代神经元培养物中VAPB突变体包裹体的大小,而敲除ERAD泛素蛋白连接酶TEB4则减小了其大小。突变的VAPB不与常染色体显性运动神经元疾病相关的seipin突变形式共分布,而是在保护性ER衍生的区室中积累,称为神经元ERPO(ER保护细胞器)。结论数据表明VAPB-P56S夹杂物代表了一种新型的可逆ER质量控制区室,该室是在突变VAPB的量超过ERAD途径的能力时形成的,并将错误折叠和聚集的VAPB与其他ER隔离开。该质量控制区室的存在揭示了神经元在应对ER中错误折叠的蛋白质应力方面的更高水平的灵活性。

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