外域
神经科学
生物
突触
突触可塑性
兴奋性突触
谢弗侧枝
细胞生物学
神经传递
兴奋性突触后电位
受体
抑制性突触后电位
生物化学
作者
Anna B. Toth,Akiko Terauchi,Lily Y Zhang,Erin Johnson‐Venkatesh,David J. Larsen,Michael A. Sutton,Hisashi Umemori
摘要
In this study, the authors document how SIRPα, a cell-adhesion molecule, participates in the late maturation of hippocampal excitatory synapses. They find that in response to activity, SIRPα sheds its ectodomain, which acts presynaptically to promote maturation in a process that requires CaM kinase, matrix metalloproteinases and the presynaptic receptor CD47. Formation of appropriate synaptic connections is critical for proper functioning of the brain. After initial synaptic differentiation, active synapses are stabilized by neural activity-dependent signals to establish functional synaptic connections. However, the molecular mechanisms underlying activity-dependent synapse maturation remain to be elucidated. Here we show that activity-dependent ectodomain shedding of signal regulatory protein-α (SIRPα) mediates presynaptic maturation. Two target-derived molecules, fibroblast growth factor 22 and SIRPα, sequentially organize the glutamatergic presynaptic terminals during the initial synaptic differentiation and synapse maturation stages, respectively, in the mouse hippocampus. SIRPα drives presynaptic maturation in an activity-dependent fashion. Remarkably, neural activity cleaves the extracellular domain of SIRPα, and the shed ectodomain in turn promotes the maturation of the presynaptic terminal. This process involves calcium/calmodulin-dependent protein kinase, matrix metalloproteinases and the presynaptic receptor CD47. Finally, SIRPα-dependent synapse maturation has an impact on synaptic function and plasticity. Thus, ectodomain shedding of SIRPα is an activity-dependent trans-synaptic mechanism for the maturation of functional synapses.
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