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首页> 外文期刊>The Journal of Physiology >Relative contributions of rod and cone bipolar cell inputs to AII amacrine cell light responses in the mouse retina.
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Relative contributions of rod and cone bipolar cell inputs to AII amacrine cell light responses in the mouse retina.

机译:杆和锥双极细胞输入对小鼠视网膜中AII amacrine细胞光反应的相对贡献。

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AII amacrine cells (AIIACs) are crucial relay stations for rod-mediated signals in the mammalian retina and they receive synaptic inputs from depolarizing and hyperpolarizing bipolar cells (DBCs and HBCs) as well as from other amacrine cells. Using whole-cell voltage-clamp technique in conjunction with pharmacological tools, we found that the light-evoked current response of AIIACs in the mouse retina is almost completely mediated by two DBC synaptic inputs: a 6,7-dinitro-quinoxaline-2,3-dione (DNQX)-resistant component mediated by cone DBCs (DBC(C)s) through an electrical synapse, and a DNQX-sensitive component mediated by rod DBCs (DBC(R)s). This scheme is supported by AIIAC current responses recorded from two knockout mice. The dynamic range of the AIIAC light response in the Bhlhb4-/- mouse (which lacks DBC(R)s) resembles that of the DNQX-resistant component, and that of the connexin36 (Cx36)-/- mouse resembles the DNQX-sensitive component. By comparing the light responses of the DBC(C)s with the DNQX-resistant AIIAC component, and light responses of the DBC(R)s with the DNQX-sensitive AIIAC component, we obtained the input-output relations of the DBC(C)-->AIIAC electrical synapse and the DBC(R)-->AIIAC chemical synapse. Similar to other glutamatergic chemical synapses in the retina, the DBC(R)-->AIIAC synapse is non-linear. Its highest voltage gain (approximately 5) is found near the dark membrane potential, and it saturates for presynaptic signals larger than 5.5 mV. The DBC(C)-->AIIAC electrical synapse is approximately linear (voltage gain of 0.92), consistent with the linear junctional conductance found in retinal electrical synapses. Moreover, relative DBC(R) and DBC(C) contributions to the AIIAC response at various light intensity levels are determined.
机译:AII amacrine细胞(AIIAC)是哺乳动物视网膜中杆介导信号的重要中继站,它们从去极化和超极化双极细胞(DBC和HBC)以及其他无长突细胞接收突触输入。使用全细胞电压钳技术与药理学工具相结合,我们发现小鼠视网膜中AIIAC的光诱发电流反应几乎完全由两个DBC突触输入介导:6,7-二硝基-喹喔啉-2,锥状DBC(DBC(C))通过电突触介导的耐3-dione(DNQX)成分,以及棒状DBC(DBC®)介导的DNQX敏感成分。该方案由两只敲除小鼠记录的AIIAC电流响应支持。 Bhlhb4-/-小鼠(缺少DBC®)中AIIAC光响应的动态范围类似于耐DNQX的组件,而connexin36(Cx36)-/-小鼠的动态范围类似于DNQX敏感零件。通过比较DBC(C)与耐DNQX的AIIAC组件的光响应以及DBC(R)与DNQX敏感的AIIAC组件的光响应,我们获得了DBC(C)的输入输出关系)-> AIIAC电突触和DBC(R)-> AIIAC化学突触。与视网膜中的其他谷氨酸能化学突触相似,-> AIIAC突触是非线性的。在暗膜电位附近发现了其最高的电压增益(大约5),并且对于大于5.5 mV的突触前信号,它会饱和。 DBC(C)-> AIIAC电突触近似为线性(电压增益为0.92),与视网膜电突触中的线性结电导一致。此外,确定了在各种光强度水平下对AIIAC响应的相对DBC(R)和DBC(C)的贡献。

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