Synapse type-specific proteomic dissection identifies IgSF8 as a

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Synapse type-specific proteomic dissection identifies IgSF8 as a
Dynamic proteomic and phosphoproteomic atlas of corticostriatal axons in neurodevelopment
Synapse type-specific proteomic dissection identifies IgSF8 as a
Dynamic proteomic and phosphoproteomic atlas of corticostriatal axons in neurodevelopment
Synapse type-specific proteomic dissection identifies IgSF8 as a
Synapse type-specific proteomic dissection identifies IgSF8 as a hippocampal CA3 microcircuit organizer
Synapse type-specific proteomic dissection identifies IgSF8 as a
The proteomic landscape of synaptic diversity across brain regions and cell types - ScienceDirect
Synapse type-specific proteomic dissection identifies IgSF8 as a
Dynamic proteomic and phosphoproteomic atlas of corticostriatal axon neurodevelopment
Synapse type-specific proteomic dissection identifies IgSF8 as a
A Modular Organization of LRR Protein-Mediated Synaptic Adhesion Defines Synapse Identity
Synapse type-specific proteomic dissection identifies IgSF8 as a
VGluR d 2 Is Detected in Excitatory Synaptic Fractions Using a New
Synapse type-specific proteomic dissection identifies IgSF8 as a
Synapse type-specific proteomic dissection identifies IgSF8 as a hippocampal CA3 microcircuit organizer
Synapse type-specific proteomic dissection identifies IgSF8 as a
A Modular Organization of LRR Protein-Mediated Synaptic Adhesion Defines Synapse Identity
Synapse type-specific proteomic dissection identifies IgSF8 as a
Frontiers A Picture Worth a Thousand Molecules—Integrative Technologies for Mapping Subcellular Molecular Organization and Plasticity in Developing Circuits
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