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首页> 外文期刊>Journal of Neurophysiology >Development of presynaptic inhibition onto retinal bipolar cell axon terminals is subclass-specific.
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Development of presynaptic inhibition onto retinal bipolar cell axon terminals is subclass-specific.

机译:对视网膜双极细胞轴突末端的突触前抑制的发展是亚类特异性的。

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Synaptic integration is modulated by inhibition onto the dendrites of postsynaptic cells. However, presynaptic inhibition at axonal terminals also plays a critical role in the regulation of neurotransmission. In contrast to the development of inhibitory synapses onto dendrites, GABAergic/glycinergic synaptogenesis onto axon terminals has not been widely studied. Because retinal bipolar cells receive subclass-specific patterns of GABAergic and glycinergic presynaptic inhibition, they are a good model for studying the development of inhibition at axon terminals. Here, using whole cell recording methods and transgenic mice in which subclasses of retinal bipolar cells are labeled, we determined the temporal sequence and patterning of functional GABAergic and glycinergic input onto the major subclasses of bipolar cells. We found that the maturation of GABAergic and glycinergic synapses onto the axons of rod bipolar cells (RBCs), on-cone bipolar cells (ON-CBCs) and off-cone bipolar cells (OFF-CBCs) were temporally distinct: spontaneous chloride-mediated currents are present in RBCs earlier in development compared with ON- and OFF-CBC, and RBCs receive GABAergic and glycinergic input simultaneously, whereas in OFF-CBCs, glycinergic transmission emerges before GABAergic transmission. Because on-CBCs show little inhibitory activity, GABAergic and glycinergic events could not be pharmacologically distinguished for these bipolar cells. The balance of GABAergic and glycinergic input that is unique to RBCs and OFF-CBCs is established shortly after the onset of synapse formation and precedes visual experience. Our data suggest that presynaptic modulation of glutamate transmission from bipolar cells matures rapidly and is differentially coordinated for GABAergic and glycinergic synapses onto distinct bipolar cell subclasses.
机译:通过抑制突触后细胞的树突来调节突触整合。但是,在轴突末端的突触前抑制在调节神经传递中也起着关键作用。与抑制突触发展到树突上相反,尚未广泛研究轴突末端上的GABA能/甘氨酸能突触。因为视网膜双极细胞接受GABA能和甘氨酸能突触前抑制的亚类特异性模式,所以它们是研究轴突末端抑制作用发展的良好模型。在这里,我们使用全细胞记录方法和其中标记了视网膜双极细胞亚类的转基因小鼠,我们确定了功能性GABA能和甘氨酸能输入到双极细胞主要亚类的时间序列和模式。我们发现,GABA能和甘氨酸能突触在杆状双极细胞(RBC),圆锥上双极细胞(ON-CBCs)和圆锥外双极细胞(OFF-CBCs)轴突上的成熟在时间上是不同的:自发氯化物介导与ON-和OFF-CBC相比,RBC中存在电流更早,并且RBC同时接受GABA能和甘氨酸能输入,而在OFF-CBC中,甘氨酸能在GABA能传递之前出现。由于CBC上几乎没有抑制活性,因此无法从药理学上区分这些双极细胞的GABA能和糖能事件。 RBC和OFF-CBC特有的GABA能和甘氨酸能输入的平衡是在突触形成开始后不久并在视觉体验之前建立的。我们的数据表明,来自双极细胞的谷氨酸传递的突触前调节迅速成熟,并且对GABA能和甘氨酸突触到不同的双极细胞亚类上有不同的协调作用。

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