突触可塑性
AMPA受体
神经科学
突触标度
长时程增强
非突触性可塑性
变质塑性
谷氨酸受体
突触增强
生物素化
生物
细胞生物学
受体
化学
生物化学
作者
Angela M. Getz,Mathieu Ducros,Christelle Breillat,Aurélie Lampin-Saint-Amaux,Sophie Daburon,Urielle François,Agata Nowacka,Mónica Fernández‐Monreal,Eric Hosy,Frédéric Lanore,Hanna L. Zieger,Matthieu Sainlos,Yann Humeau,Daniel Choquet
出处
期刊:Science Advances
[American Association for the Advancement of Science]
日期:2022-07-27
卷期号:8 (30)
被引量:28
标识
DOI:10.1126/sciadv.abm5298
摘要
Regulation of synaptic neurotransmitter receptor content is a fundamental mechanism for tuning synaptic efficacy during experience-dependent plasticity and behavioral adaptation. However, experimental approaches to track and modify receptor movements in integrated experimental systems are limited. Exploiting AMPA-type glutamate receptors (AMPARs) as a model, we generated a knock-in mouse expressing the biotin acceptor peptide (AP) tag on the GluA2 extracellular N-terminal. Cell-specific introduction of biotin ligase allows the use of monovalent or tetravalent avidin variants to respectively monitor or manipulate the surface mobility of endogenous AMPAR containing biotinylated AP-GluA2 in neuronal subsets. AMPAR immobilization precluded the expression of long-term potentiation and formation of contextual fear memory, allowing target-specific control of the expression of synaptic plasticity and animal behavior. The AP tag knock-in model offers unprecedented access to resolve and control the spatiotemporal dynamics of endogenous receptors, and opens new avenues to study the molecular mechanisms of synaptic plasticity and learning.
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