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◇ bioRxiv2026-09-10· neuroscience

The PSD-95 interactome of hippocampal synapses potentiated in response to an in vivo learning task

A. Jacob, M. Di Caprio, I. Arisi, F. Gobbo, F. C. Latini, A. Faraone, L. Zentilin, I. Heinze, S. Marinelli, A. Ori, M. Mainardi, A. Cattaneo

原始摘要(英文原文)· Original abstract
Changes in the molecular composition of synapses underlie the functional changes in synaptic strength after learning. These phenomena have been studied either via imaging of individual candidate proteins, or via the global analysis of the synaptic proteome, lumping together all synapses, regardless of their activation or potentiation status. As a step towards the characterization of the proteome of synapses that have undergone potentiation following a learning paradigm, we have designed SynActive-PSD95-FLAG, a genetically encoded probe consisting of a FLAG-tagged PSD-95 endowed with activity-dependent local translation and expression enrichment at potentiating dendritic spines. SynActive-PSD95-FLAG was expressed via Adeno Associated Viral vectors (AAVs) in the hippocampus of mice which were exposed to contextual fear conditioning. Then, PSD95-FLAG immunoprecipitation from hippocampal extracts, followed by mass spectrometry, was used to characterize the changes in the PSD-95 interactome caused by in vivo synaptic potentiation. This revealed extensive rearrangements in the stoichiometry between PSD-95 and its direct and indirect interactors, highlighting proteins involved in peptide translation, including ribosomal components, and vesicle trafficking. Our results, obtained with a selectively expressed proteomic handle, provide new insight into the molecular substrates of hippocampal learning and a novel tool to study the proteome of potentiated synapses.
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