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Bistratified starburst amacrine cells in Sox2 conditional knockout mouse retina display ON and OFF responses

机译:在SOX2条件淘汰鼠标视网膜中的Bistratified Starburst氨基细胞显示出和关闭响应

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Cell-intrinsic factors, in conjunction with environmental signals, guide migration, differentiation, and connectivity during early development of neuronal circuits. Within the retina, inhibitory starburst amacrine cells (SBACs) comprise ON types with somas in the ganglion cell layer (GCL.) and dendrites stratifying narrowly in the inner half of the inner plexiform layer (IPL) and OFF types with somas in the inner nuclear layer (INI.) and dendrites stratifying narrowly in the outer half of the IPL. The transcription factor Sox2 is crucial to this subtype specification. Without Sox2, many ON-type SBACs destined for the GCL settle in the INL while many that reach the GCL develop bistratified dendritic arbors. This study asked whether ON-type SBACs in Sox2-conditional knockout retinas exhibit selective connectivity only with ON-type bipolar cells or their bistratified morphology allows them to connect to both ON and OFF bipolar cells. Physiological data demonstrate that these cells receive ON and OFF excitatory inputs, indicating that the ectopically stratified dendrites make functional synapses with bipolar cells. The excitatory inputs were smaller and more transient in Sox2-conditional knockout compared with wild type; however, inhibitory inputs appeared largely unchanged. Thus dendritic stratification, rather than cellular identification, may be the major factor that determines ON vs. OFF connectivity.
机译:细胞内在因子,与环境信号,导侧迁移,分化和连接在神经元电路的早期发展中。在视网膜内,抑制急性爆炸氨基细胞(SBACs)包括在神经节细胞层(GCl。)中具有索华族的类型(GCl。)和在内部丛生层(IPL)内部的内部分层和内部核中的SOMAS中的枝晶分层。层(Ini。)和枝条在IPL的外部狭窄地分层。转录因子Sox2对该亚型规范至关重要。没有SOX2,许多用于GCL的型SBAC在INL中沉淀,而许多则到达GCL开发了Bistratified树突仲裁。本研究询问SOX2条件敲除视网膜中的型SBAC是否表现出仅用于型双极细胞的选择性连接,或者它们的双极形态允许它们连接到双极细胞上。生理数据表明,这些细胞接受并关闭兴奋性输入,表明异常分层的树突使功能性突触与双极细胞产生官果。与野生型相比,兴奋性输入较小,瞬间较小,速度较小;然而,抑制输入显着显得不变。因此,树突状分层,而不是细胞识别,可以是确定对偏离连接的主要因素。

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