突触
细胞外基质
兴奋性突触
突触可塑性
神经科学
神经周围网
生物
细胞生物学
斑马鱼
突触形成
兴奋性突触后电位
生物化学
受体
基因
抑制性突触后电位
作者
Haruna Nakajo,Ran Cao,Supriya A. Mula,Justin McKetney,Nicholas J. Silva,Mansi Shah,Indigo V.L. Rose,Martin Kampmann,Danielle L. Swaney,Christoph Kirst,Anna V. Molofsky
出处
期刊:
[Cold Spring Harbor Laboratory]
日期:2025-02-27
被引量:1
标识
DOI:10.1101/2025.02.27.640672
摘要
Abstract Maintaining a dynamic neuronal synapse pool is critical to brain development. The extracellular matrix (ECM) regulates synaptic plasticity via mechanisms that are still being defined and are studied predominantly in adulthood. Using live imaging of excitatory synapses in zebrafish hindbrain we observed a bimodal distribution of short-lived (dynamic) and longer-lived (stable) synapses. Disruption of ECM via digestion or brevican deletion destabilized dynamic but not stable synapses and led to decreased synapse density. Conversely, loss of matrix metalloproteinase 14 (MMP14) led to accumulation of brevican and increased the stable synapse pool, resulting in increased synapse density. Microglial MMP14 was essential to these effects in both fish and human iPSC-derived cultures. Both MMP14 and brevican were required for experience-dependent synapse plasticity in a motor learning assay. These data, complemented by mathematical modeling, define an essential role of ECM remodeling in maintaining a dynamic subset of synapses during brain development.
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