首页> 美国卫生研究院文献>Journal of Neurophysiology >Neural Circuits: Bistratified starburst amacrine cells in Sox2 conditional knockout mouse retina display ON and OFF responses
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Neural Circuits: Bistratified starburst amacrine cells in Sox2 conditional knockout mouse retina display ON and OFF responses

机译:神经回路:Sox2条件性基因敲除小鼠视网膜中的角化爆星无长突细胞显示开和关响应

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摘要

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 (INL) 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.>NEW & NOTEWORTHY Conditional knockout of the transcription factor Sox2 during early embryogenesis converts a monostratifying starburst amacrine cell into a bistratifying starburst cell. Here we show that these bistratifying starburst amacrine cells form functional synaptic connections with both ON and OFF bipolar cells. This suggests that normal ON vs. OFF starburst connectivity may not require distinct molecular specification. Proximity alone may be sufficient to allow formation of functional synapses.
机译:细胞内在因素与环境信号一起在神经元回路的早期发育过程中指导迁移,分化和连通性。在视网膜内,抑制性星爆无长突细胞(SBAC)包括神经节细胞层(GCL)中具有体细胞的ON型和树突,在内部丛状层(IPL)的内半部中狭窄地分层,而OFF型具有在核内层中的体细胞(INL)并在IPL的外半部狭窄地分层。转录因子Sox2对于此亚型规范至关重要。如果没有Sox2,则许多发往GCL的ON型SBAC都将落在INL中,而许多到达GCL的SBAC则会形成两层树突状乔木。这项研究询问Sox2条件性敲除视网膜中的ON型SBAC是否仅与ON型双极型细胞表现出选择性连接性,或者它们的双分层形态允许它们同时连接ON和OFF双极型细胞。生理数据表明,这些细胞接受ON和OFF兴奋性输入,表明异位分层树突与双极细胞发生功能性突触。与野生型相比,Sox2条件性基因敲除的兴奋性输入更小且更短暂。然而,抑制性投入在很大程度上没有改变。因此,树突分层而不是细胞鉴定可能是决定ON与OFF连通性的主要因素。> NEW&NOTEWORTHY 在早期胚胎发生过程中条件性敲除转录因子Sox2会将单层星爆无长突细胞转化为双层爆星细胞。在这里,我们显示这些双分层星爆无长突细胞与ON和OFF双极细胞形成功能性突触连接。这表明普通的“开”与“关”星爆连接可能不需要特殊的分子规格。单独接近可能足以形成功能性突触。

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