Specificity and timing of synapse disassembly in the CNS are essential to learning how individual circuits react to neurodegeneration of the postsynaptic neuron. In sensory systems such as the mammalian retina, synaptic connections of second-order neurons are known to remodel and reconnect in the face of sensory cell loss. Here we analyzed whether degenerating third-order neurons can remodel their local presynaptic connectivity. We injured adult retinal ganglion cells by transiently elevating intraocular pressure. We show that loss of presynaptic structures occurs before postsynaptic density proteins and accounts for impaired transmission from presynaptic neurons, despite no evidence of presynaptic cell loss, axon terminal shrinkage, or reduced functional input. Loss of synapses is biased among converging presynaptic neuron types, with preferential loss of the major excitatory cone-driven partner and increased connectivity with rod-driven presynaptic partners, demonstrating that this adult neural circuit is capable of structural plasticity while undergoing neurodegeneration.
Disassembly and rewiring of a mature converging excitatory circuit following injury.
损伤后成熟汇聚兴奋性回路的拆解和重新连接
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作者:Della Santina Luca, Yu Alfred K, Harris Scott C, Soliño Manuel, Garcia Ruiz Tonatiuh, Most Jesse, Kuo Yien-Ming, Dunn Felice A, Ou Yvonne
| 期刊: | Cell Reports | 影响因子: | 6.900 |
| 时间: | 2021 | 起止号: | 2021 Aug 3; 36(5):109463 |
| doi: | 10.1016/j.celrep.2021.109463 | 研究方向: | 毒理研究 |
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