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Astrocyte Ca2+ Influx Negatively Regulates Neuronal Activity

机译:星形胶质细胞Ca 2+流入负调节神经元活动。

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摘要

Maintenance of neural circuit activity requires appropriate regulation of excitatory and inhibitory synaptic transmission. Recently, glia have emerged as key partners in the modulation of neuronal excitability; however, the mechanisms by which glia regulate neuronal signaling are still being elucidated. Here, we describe an analysis of how Ca2+ signals within Drosophila astrocyte-like glia regulate excitability in the nervous system. We find that Drosophila astrocytes exhibit robust Ca2+ oscillatory activity manifested by fast, recurrent microdomain Ca2+ fluctuations within processes that infiltrate the synaptic neuropil. Unlike the enhanced neuronal activity and behavioral seizures that were previously observed during manipulations that trigger Ca2+ influx into Drosophila cortex glia, we find that acute induction of astrocyte Ca2+ influx leads to a rapid onset of behavioral paralysis and a suppression of neuronal activity. We observe that Ca2+ influx triggers rapid endocytosis of the GABA transporter (GAT) from astrocyte plasma membranes, suggesting that increased synaptic GABA levels contribute to the neuronal silencing and paralysis. We identify Rab11 as a novel regulator of GAT trafficking that is required for this form of activity regulation. Suppression of Rab11 function strongly offsets the reduction of neuronal activity caused by acute astrocyte Ca2+ influx, likely by inhibiting GAT endocytosis. Our data provide new insights into astrocyte Ca2+ signaling and indicate that distinct glial subtypes in the Drosophila brain can mediate opposing effects on neuronal excitability.
机译:维持神经回路活动需要适当调节兴奋性和抑制性突触传递。最近,神经胶质已经成为调节神经元兴奋性的关键伙伴。然而,胶质细胞调节神经元信号转导的机制仍在阐明中。在这里,我们描述了果蝇星形胶质细胞样神经胶质细胞内Ca 2 + 信号如何调节神经系统兴奋性的分析。我们发现果蝇星形胶质细胞表现出强大的Ca 2 + 振荡活性,其表现为渗透突触神经纤维的过程中快速的,经常性的微域Ca 2 + 波动。与先前触发Ca 2 + 流入果蝇胶质细胞的操纵过程中观察到的神经元活性和行为性癫痫发作不同,我们发现星形胶质细胞Ca 2 + 流入的急性诱导导致行为麻痹的快速发作和神经元活动的抑制。我们观察到Ca 2 + 大量涌入会触发星形胶质细胞质膜GABA转运蛋白(GAT)的快速内吞,提示突触中GABA的水平升高会导致神经元的沉默和麻痹。我们认为Rab11是GAT贩运的新型监管者,是这种形式的活动监管所必需的。 Rab11功能的抑制强烈抵消了急性星形胶质细胞Ca 2 + 大量涌入引起的神经元活性的降低,这可能是由于抑制了GAT的内吞作用。我们的数据为星形胶质细胞Ca 2 + 信号传导提供了新的见解,并表明果蝇脑中不同的神经胶质亚型可以介导对神经元兴奋性的相反作用。

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