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The glial sodium-potassium-2-chloride cotransporter is required for synaptic transmission in the Drosophila visual system

机译:果蝇视觉系统中神经突触传递需要神经胶质钠-钾-2-氯化物共转运蛋白。

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摘要

The Drosophila Ncc69 gene encodes a Na+-K+-2Cl-cotransporter (NKCC) that is critical for regulating intra- and extracellular ionic conditions in different tissues. Here, we show that the Ncc69 transporter is necessary for fly vision and that its expression is required non-autonomously in glia to maintain visual synaptic transmission. Flies mutant for Ncc69 exhibit normal photoreceptor depolarization in response to a light pulse but lack the ON and OFF-transients characteristic of postsynaptic responses of lamina neurons, indicating a failure in synaptic transmission. We also find that synaptic transmission requires the Ncc69 regulatory kinases WNK and Fray in glia. The ERG phenotype is associated with a defect in the recycling of the histamine neurotransmitter. Ncc69 mutants exhibit higher levels of the transport metabolite carcinine in lamina cartridges, with its accumulation most intense in the extracellular space. Our work reveals a novel role of glial NKCC transporters in synaptic transmission, possibly through regulating extracellular ionic conditions.
机译:果蝇Ncc69基因编码Na + -K + -2Cl - -cotransporter(NKCC),对调节细胞内和细胞外离子至关重要不同组织的状况。在这里,我们显示Ncc69转运蛋白是蝇视觉的必要条件,其表达必须在神经胶质细胞中非自主地维持,以维持视觉突触传递。 Ncc69的果蝇突变体对光脉冲有反应,显示出正常的感光体去极化,但缺乏层神经元突触后反应的ON和OFF瞬态特征,表明突触传递失败。我们还发现突触传递需要神经胶质细胞中的Ncc69调节激酶WNK和Fray。 ERG表型与组胺神经递质回收中的缺陷有关。 Ncc69突变体在叶片中显示出较高水平的运输代谢物类癌素,其积累在细胞外空间最强。我们的工作揭示了神经胶质NKCC转运蛋白在突触传递中的新作用,可能是通过调节细胞外离子条件来实现的。

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