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Super-Resolution Microscopy Reveals Presynaptic Localization of the ALS/FTD Related Protein FUS in Hippocampal Neurons

机译:超高分辨率显微镜显示海马神经元中ALS / FTD相关蛋白FUS的突触前定位

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摘要

Fused in Sarcoma (FUS) is a multifunctional RNA-/DNA-binding protein, which is involved in the pathogenesis of the neurodegenerative disorders amyotrophic lateral sclerosis (ALS) and frontotemporal dementia (FTD). A common hallmark of these disorders is the abnormal accumulation of mutated FUS protein in the cytoplasm. Under normal conditions FUS is confined to the nuclear compartment, in neurons, however, additional somatodendritic localization can be observed. In this study, we carefully analyzed the subcellular localization of endogenous FUS at synaptic sites of hippocampal neurons which are among the most affected cell types in FTD with FUS pathology. We could confirm a strong nuclear localization of FUS as well as its prominent and widespread neuronal expression throughout the adult and developing rat brain, particularly in the hippocampus, the cerebellum and the outer layers of the cortex. Intriguingly, FUS was also consistently observed at synaptic sites as detected by neuronal subcellular fractionation as well as by immunolabeling. To define a pre- and/or postsynaptic localization of FUS, we employed super-resolution fluorescence localization microscopy. FUS was found to be localized within the axon terminal in close proximity to the presynaptic vesicle protein Synaptophysin1 and adjacent to the active zone protein Bassoon, but well separated from the postsynaptic protein PSD-95. Having shown the presynaptic localization of FUS in the nervous system, a novel extranuclear role of FUS at neuronal contact sites has to be considered. Since there is growing evidence that local presynaptic translation might also be an important mechanism for plasticity, FUS – like the fragile X mental retardation protein FMRP – might act as one of the presynaptic RNA-binding proteins regulating this machinery. Our observation of presynaptic FUS should foster further investigations to determine its role in neurodegenerative diseases such as ALS and FTD.
机译:融合在肉瘤中(FUS)是一种多功能的RNA / DNA结合蛋白,参与神经退行性疾病肌萎缩性侧索硬化症(ALS)和额颞痴呆(FTD)的发病机理。这些疾病的一个共同特征是突变的FUS蛋白在细胞质中的异常积累。在正常情况下,FUS被限制在神经元的核区中,但是,可以观察到额外的体树突状细胞定位。在这项研究中,我们仔细分析了内源性FUS在海马神经元突触位点的亚细胞定位,海马神经元是FTD病理最严重的细胞类型之一。我们可以证实FUS的核定位很强,并且在整个成年和发育中的大鼠大脑中,特别是在海马,小脑和皮层的外层中,都有明显的广泛神经元表达。有趣的是,通过神经元亚细胞分级分离和免疫标记也可以在突触部位持续观察到FUS。为了定义FUS的突触前和/或突触后定位,我们采用了超分辨率荧光定位显微镜。发现FUS位于突触前囊泡蛋白Synaptophysin1的轴突末端,并与活性区蛋白Bassoon相邻,但与突触后蛋白PSD-95很好地分开。已显示FUS在神经系统中的突触前定位,必须考虑FUS在神经元接触部位的新型核外作用。由于越来越多的证据表明局部突触前翻译也可能是可塑性的重要机制,因此FUS(如脆弱的X智力低下的蛋白质FMRP)可能是调节这种机制的突触前RNA结合蛋白之一。我们对突触前FUS的观察应促进进一步的研究,以确定其在ALS和FTD等神经退行性疾病中的作用。

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