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Glial TDP-43 regulates axon wrapping GluRIIA clustering and fly motility by autonomous and non-autonomous mechanisms

机译:Glial TDP-43通过自主和非自主机制调节轴突包裹GluRIIA聚类和苍蝇运动

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摘要

Alterations in the glial function of TDP-43 are becoming increasingly associated with the neurological symptoms observed in Amyotrophic Lateral Sclerosis (ALS), however, the physiological role of this protein in the glia or the mechanisms that may lead to neurodegeneration are unknown. To address these issues, we modulated the expression levels of TDP-43 in the Drosophila glia and found that the protein was required to regulate the subcellular wrapping of motoneuron axons, promote synaptic growth and the formation of glutamate receptor clusters at the neuromuscular junctions. Interestingly, we determined that the glutamate transporter EAAT1 mediated the regulatory functions of TDP-43 in the glia and demonstrated that genetic or pharmacological compensations of EAAT1 activity were sufficient to modulate glutamate receptor clustering and locomotive behaviors in flies. The data uncovers autonomous and non-autonomous functions of TDP-43 in the glia and suggests new experimentally based therapeutic strategies in ALS.
机译:TDP-43胶质细胞功能的改变与肌萎缩性侧索硬化症(ALS)中观察到的神经系统症状越来越相关,但是,该蛋白在神经胶质中的生理作用或可能导致神经退行性的机制尚不清楚。为了解决这些问题,我们调节了果蝇胶质细胞中TDP-43的表达水平,发现该蛋白需要调节运动神经元轴突的亚细胞包裹,促进突触生长以及在神经肌肉接头处形成谷氨酸受体簇。有趣的是,我们确定谷氨酸转运蛋白EAAT1介导了TDP-43在胶质细胞中的调节功能,并证明了EAAT1活性的遗传或药理学补偿足以调节果蝇中的谷氨酸受体簇集和机车行为。数据揭示了神经胶质细胞中TDP-43的自主和非自主功能,并提出了新的基于实验的ALS治疗策略。

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