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Fast glutamate uptake via EAAT2 shapes the cone-mediated light offset response in bipolar cells

机译:通过EAAT2快速摄取谷氨酸使双极细胞中视锥介导的光偏移反应

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摘要

Excitatory amino acid transporters (EAATs) are responsible for extracellular glutamate uptake within the retina, and are expressed by retinal neurons and Müller cells. Their role within glutamatergic synapses is not completely understood. In the salamander retina, five distinct EAAT-encoding genes have been cloned, making the amphibian retina an excellent system to study EAAT function. This study focused on sEAAT2, which is expressed in photoreceptor terminals and Off-bipolar cells in two isoforms, sEAAT2A and sEAAT2B. Using whole-cell patch-clamp recording, florescence imaging and antibody labelling methods, we systematically studied the functions of these two isoforms at the synapse between photoreceptors and bipolar cells, both in dark and with photic stimulation. Both sEAAT2A and sEAAT2B were sensitive to dihydrokainic acid (DHKA), a known EAAT2-specific inhibitor. Each isoform of sEAAT2 was found to play a role in tonic glutamate uptake at the cone synapse in darkness. Furthermore, presynaptic sEAAT2A strongly suppressed the rapid, transient glutamate signal from cones following light-offset. This was achieved by quickly binding exocytosed glutamate, which subsequently limited glutamate spillover to adjacent receptors at postsynaptic sites. Since the intensity and duration of photic stimulation determine the magnitude of these cone transient signals, we postulate that presynaptic cone EAATs contribute to the encoding of contrast sensitivity in cone vision.
机译:兴奋性氨基酸转运蛋白(EAAT)负责视网膜内细胞外谷氨酸的吸收,并由视网膜神经元和Müller细胞表达。它们在谷氨酸能突触中的作用尚未完全了解。在the视网膜中,已经克隆了五个不同的EAAT编码基因,使两栖动物视网膜成为研究EAAT功能的出色系统。这项研究的重点是sEAAT2,它以两种亚型sEAAT2A和sEAAT2B在光感受器末端和非双极细胞中表达。使用全细胞膜片钳记录,荧光成像和抗体标记方法,我们在黑暗和光刺激下系统地研究了这两种同工型在感光细胞和双极细胞之间的突触中的功能。 sEAAT2A和sEAAT2B都对已知的EAAT2特异性抑制剂二氢海藻酸(DHKA)敏感。发现sEAAT2的每种同工型在黑暗中视锥突触中的进补谷氨酸摄取中均起作用。此外,突触前sEAAT2A强烈抑制了光偏移后来自视锥细胞的快速,瞬时谷氨酸信号。这是通过快速结合胞吐谷氨酸实现的,随后将谷氨酸溢出限制在突触后位点的相邻受体上。由于光刺激的强度和持续时间决定了这些视锥细胞瞬态信号的强度,因此我们假设突触前视锥细胞EAAT有助于视锥细胞的对比敏感度编码。

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