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Functional NMDA receptors are expressed by both AII and A17 amacrine cells in the rod pathway of the mammalian retina

机译:NMDA受体在哺乳动物视网膜的杆状通路中由AII和A17紫胶质细胞表达

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摘要

At many glutamatergic synapses, non-N-methyl-d-aspartate (NMDA) and NMDA receptors are coexpressed postsynaptically. In the mammalian retina, glutamatergic rod bipolar cells are presynaptic to two rod amacrine cells (AII and A17) that constitute dyad postsynaptic partners opposite each presynaptic active zone. Whereas there is strong evidence for expression of non-NMDA receptors by both AII and A17 amacrines, the expression of NMDA receptors by the pre- and postsynaptic neurons in this microcircuit has not been resolved. In this study, using patch-clamp recording from visually identified cells in rat retinal slices, we investigated the expression and functional properties of NMDA receptors in these cells with a combination of pharmacological and biophysical methods. Pressure application of NMDA did not evoke a response in rod bipolar cells, but for both AII and A17 amacrines, NMDA evoked responses that were blocked by a competitive antagonist (CPP) applied extracellularly and an open channel blocker (MK-801) applied intracellularly. NMDA-evoked responses also displayed strong Mg2+-dependent voltage block and were independent of gap junction coupling. With low-frequency application (60-s intervals), NMDA-evoked responses remained stable for up to 50 min, but with higher-frequency stimulation (10- to 20-s intervals), NMDA responses were strongly and reversibly suppressed. We observed strong potentiation when NMDA was applied in nominally Ca2+-free extracellular solution, potentially reflecting Ca2+-dependent NMDA receptor inactivation. These results indicate that expression of functional (i.e., conductance-increasing) NMDA receptors is common to both AII and A17 amacrine cells and suggest that these receptors could play an important role for synaptic signaling, integration, or plasticity in the rod pathway.
机译:在许多谷氨酸能突触中,非N-甲基-d-天冬氨酸(NMDA)和NMDA受体突触后共表达。在哺乳动物的视网膜中,谷氨酸能杆双极细胞与两个杆无长突细胞(AII和A17)突触前,后者构成与每个突触前活性区相对的二元突触后伙伴。尽管有强有力的证据表明AII和A17巨无长蛋白均可表达非NMDA受体,但该微电路中突触前和突触后神经元的NMDA受体表达尚未得到解决。在这项研究中,使用膜片钳记录从大鼠视网膜切片中视觉识别的细胞中,我们结合药理学和生物物理方法研究了这些细胞中NMDA受体的表达和功能特性。 NMDA的加压应用不会在杆状双极细胞中引起反应,但是对于AII和A17的无长分泌蛋白,NMDA引起的反应被细胞外应用的竞争性拮抗剂(CPP)和细胞内应用的开放通道阻滞剂(MK-801)阻断。 NMDA诱发的反应还表现出强烈的Mg 2 + 依赖性电压阻滞,并且与间隙结耦合无关。低频应用(间隔60秒),NMDA引起的反应在长达50分钟的时间内保持稳定,而高频刺激(间隔10至20秒),NMDA反应被强烈且可逆地抑制。当在名义上不含Ca 2 + 的细胞外溶液中应用NMDA时,我们观察到了强大的增强作用,可能反映了依赖Ca 2 + 的NMDA受体失活。这些结果表明功能性(即,增加电导)的NMDA受体的表达对于AII和A17无长突细胞都是共同的,并且表明这些受体可能在杆途径中对突触信号传导,整合或可塑性起重要作用。

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