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Robo3-driven axon midline crossing conditions functional maturation of a large commissural synapse

机译:Robo3驱动的轴突中线穿越条件下大连合突触的功能成熟

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During the formation of neuronal circuits, axon pathfinding decisions specify the location of synapses on the correct brain side and in correct target areas. We investigated a possible link between axon midline crossing and the subsequent development of output synapses formed by these axons. Conditional knockout of Robo3 in the auditory system forced a large commissural synapse, the calyx of Held, to be exclusively formed on the wrong, ipsilateral side. Ipsilateral calyx of Held synapses showed strong transmission defects, with reduced and desynchronized transmitter release, fewer fast-releasable vesicles, and smaller and more variable presynaptic Ca2+ currents. Transmission defects were not observed in a downstream inhibitory synapse, and some defects persisted into adulthood. These results suggest that axon midline crossing conditions functional maturation of commissural synapses, thereby minimizing the impact of mislocalized synapses on information processing. This mechanism might be relevant to human disease caused by mutations in the ROBO3 gene.
机译:在神经回路形成过程中,轴突寻路决策会指定突触在正确的大脑侧和正确的目标区域中的位置。我们调查了轴突中线穿越和这些轴突形成的输出突触的后续发展之间的可能联系。 Robo3在听觉系统中的有条件敲除迫使一个大的连合突触(Held的花萼)专门形成在错误的同侧。 Held突触的同侧花萼显示出很强的传播缺陷,递质的释放减少和不同步,快速释放的囊泡更少,并且突触前的Ca2 +电流更小且变化更大。在下游抑制性突触中未观察到传播缺陷,并且某些缺陷持续到成年。这些结果表明轴突中线交叉条件功能连合突触的成熟,从而最大限度地减少了错误定位的突触对信息处理的影响。这种机制可能与ROBO3基因突变引起的人类疾病有关。

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