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Glycinergic input of widefield, displaced amacrine cells of the mouse retina

机译:小鼠视网膜宽视场无长突细胞的甘氨酸能输入

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摘要

Glycine receptors (GlyRs) of displaced amacrine cells of the mouse retina were analysed using whole cell recordings and immunocytochemical staining with subunit-specific antibodies. During the recordings the cells were filled with a fluorescent tracer and 11 different morphological types could be identified. The studies were performed in wild-type mice and in mutant mice deficient in the GlyRα1 (Glra1spd-ot, ‘oscillator’ mouse), the GlyRα2 (Glra2−/−) and the GlyRα3 subunit (Glra3−/−). Based on their responses to the application of exogenous glycine in the retinas of wild-type and mutant mice, the cells were grouped into three major classes: group I cells (comprising the morphological types MA-S5, MA-S1, MA-S1/S5, A17, PA-S1, PA-S5 and WA-S1), group II cells (comprising the morphological types PA-S4, WA-S3 and WA-multi) and ON-starburst cells. For further analysis, spontaneous inhibitory postsynaptic currents (sIPSCs) were measured both in wild-type and mutant mouse retinas. Glycinergic sIPSCs and glycine induced currents of group I cells remained unaltered across wild-type and the three mutant mice (mean decay time constant of sIPSCs, τ∼25 ms). Group II cells showed glycinergic sIPSCs and glycine induced currents in wild-type, Glra1spd-ot and Glra3−/− mice (τ∼25 ms); however, glycinergic currents were absent in group II cells of Glra2−/− mice. Glycine induced currents and sIPSCs recorded from ON-starburst amacrine cells did not differ significantly between wild-type and the mutant mouse retinas (τ∼50–70 ms). We propose that GlyRs of group II cells are dominated by the α2 subunit; GlyRs of ON-starburst amacrine cells appear to be dominated by the α4 subunit.
机译:使用全细胞记录和亚基特异性抗体的免疫细胞化学染色分析小鼠视网膜无长突细胞的甘氨酸受体(GlyRs)。在记录过程中,细胞充满了荧光示踪剂,可以鉴定出11种不同的形态。该研究在野生型小鼠和缺乏GlyRα1的突变小鼠(Glra1spd-ot,“振荡”小鼠),GlyRα2(Glra2-/-)和GlyRα3亚基(Glra3-/-)中进行。根据它们对野生型和突变型小鼠视网膜中外源甘氨酸应用的反应,将细胞分为三大类:I类细胞(包括形态学类型MA-S5,MA-S1,MA-S1 / S5,A17,PA-S1,PA-S5和WA-S1),第II组细胞(包括形态类型PA-S4,WA-S3和WA-multi)和ON星暴细胞。为了进一步分析,在野生型和突变型小鼠视网膜中均检测到了自发的抑制性突触后电流(sIPSC)。在野生型和三只突变小鼠中,甘草酸sIPSCs和甘氨酸诱导的I组细胞的电流保持不变(sIPSCs的平均衰变时间常数,τ〜25 ms)。 II组细胞在野生型,Glra1spd-ot和Glra3-/-小鼠中显示甘氨酸能sIPSC和甘氨酸诱导的电流(τ〜25 ms)。但是,Glra2-/-小鼠的II组细胞中没有甘氨酸能电流。野生型和突变型小鼠视网膜之间的甘氨酸诱导电流和sIPSCs均来自星形爆破无长突霉素细胞(τ〜50–70 ms)没有显着差异。我们建议II组细胞的GlyRs由α2亚基占主导。恒星爆裂的无长突细胞的GlyRs似乎由α4亚基主导。

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