首页> 外文期刊>The European Journal of Neuroscience >AMPA-preferring receptors with high Ca2+ permeability mediate dendritic plasticity of retinal horizontal cells.
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AMPA-preferring receptors with high Ca2+ permeability mediate dendritic plasticity of retinal horizontal cells.

机译:具有较高Ca2 +渗透性的AMPA优先受体介导视网膜水平细胞的树突可塑性。

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摘要

The synaptic complex formed by the cone photoreceptor pedicles and the dendrites of horizontal cells in the teleost retina undergoes structural changes during light adaptation. Numerous spinules are formed by the terminal dendrites, and they are subsequently retracted during dark adaptation. In a retina kept under continuous illumination, the retraction process can be initiated by analogues of the neurotransmitter glutamate acting at AMPA/kainate receptors. On the other hand, the retraction process depends on calcium influx and the subsequent activation of CaMkII. We show here that the retraction of spinules induced by AMPA or kainate is not impaired in the presence of cobalt, making an involvement of voltage-gated calcium channels unlikely. Using calcium imaging techniques with isolated horizontal cells, we demonstrate that AMPA and kainate, but not NMDA, increase [Ca2+]i in the presence of nicardipine, caffeine and thapsigargin. The increase of [Ca2+]i under these conditions depends on [Ca2+]o and on the agonist in a dose-dependent manner, suggesting that the increase of [Ca2+]i is largely due to calcium influx through the agonist-gated channel. Pharmacological studies were performed to determine whether AMPA- and/or kainate-preferring receptors mediate the calcium influx. The AMPA-preferring receptor antagonist LY303070 blocked glutamate- and kainate-evoked increases of [Ca2+]i in a concentration-dependent manner, indicating that kainate-preferring receptors contributed little or nothing to the observed [Ca2+]i increase. This was supported by experiments where cyclothiazide (which blocks the desensitization of AMPA receptors) and concanavalin A (which potentiates responses mediated by kainate receptors) were applied. In all cases, LY303070 blocked the agonist-evoked increase of [Ca2+]i. The presence of AMPA-preferring receptors with high Ca2+ permeability on horizontal cells was also supported by measuring agonist-induced currents using whole-cell recording techniques. Furthermore, LY303070 was able to impair the retraction of spinules during dark adaption in the in vivo situation.
机译:圆锥形感光椎弓根和硬骨膜视网膜中水平细胞的树突形成的突触复合物在光适应过程中发生结构变化。末端树突形成许多尖刺,随后它们在暗适应期间缩回。在保持连续照明的视网膜中,可通过作用于AMPA /红藻氨酸受体的神经递质谷氨酸类似物来引发缩回过程。另一方面,收缩过程取决于钙的流入和随后对CaMkII的激活。我们在这里表明,在钴的存在下,AMPA或海藻酸盐诱导的棘突回缩不会受到损害,从而使电压门控钙通道的参与变得不可能。使用具有分离的水平细胞的钙成像技术,我们证明了在存在尼卡地平,咖啡因和毒胡萝卜素的情况下,AMPA和红藻氨酸而不是NMDA会增加[Ca2 +] i。在这些条件下,[Ca2 +] i的增加取决于[Ca2 +] o和激动剂的剂量依赖性,这表明[Ca2 +] i的增加很大程度上是由于钙通过激动剂门控通道的流入。进行了药理学研究,以确定AMPA和/或海藻酸盐优先受体是否介导钙流入。 AMPA优先受体拮抗剂LY303070以浓度依赖的方式阻止了谷氨酸和海藻酸盐引起的[Ca2 +] i的增加,这表明凯恩特优先受体对观察到的[Ca2 +] i的增加几乎没有贡献。实验得到了支持,其中应用了环噻嗪(可阻止AMPA受体的脱敏)和伴刀豆球蛋白A(可增强由海藻酸酯受体介导的反应)。在所有情况下,LY303070均阻断了激动剂引起的[Ca2 +] i的增加。通过使用全细胞记录技术测量激动剂诱导的电流,也支持在水平细胞上具有高Ca2 +渗透性的AMPA优先受体的存在。此外,LY303070能够在体内暗适应过程中削弱脊髓的回缩。

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