| Literature DB >> 24413018 |
Christoph Biesemann1, Mads Grønborg, Elisa Luquet, Sven P Wichert, Véronique Bernard, Simon R Bungers, Ben Cooper, Frédérique Varoqueaux, Liyi Li, Jennifer A Byrne, Henning Urlaub, Olaf Jahn, Nils Brose, Etienne Herzog.
Abstract
For decades, neuroscientists have used enriched preparations of synaptic particles called synaptosomes to study synapse function. However, the interpretation of corresponding data is problematic as synaptosome preparations contain multiple types of synapses and non-synaptic neuronal and glial contaminants. We established a novel Fluorescence Activated Synaptosome Sorting (FASS) method that substantially improves conventional synaptosome enrichment protocols and enables high-resolution biochemical analyses of specific synapse subpopulations. Employing knock-in mice with fluorescent glutamatergic synapses, we show that FASS isolates intact ultrapure synaptosomes composed of a resealed presynaptic terminal and a postsynaptic density as assessed by light and electron microscopy. FASS synaptosomes contain bona fide glutamatergic synapse proteins but are almost devoid of other synapse types and extrasynaptic or glial contaminants. We identified 163 enriched proteins in FASS samples, of which FXYD6 and Tpd52 were validated as new synaptic proteins. FASS purification thus enables high-resolution biochemical analyses of specific synapse subpopulations in health and disease.Entities:
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Year: 2014 PMID: 24413018 PMCID: PMC3989609 DOI: 10.1002/embj.201386120
Source DB: PubMed Journal: EMBO J ISSN: 0261-4189 Impact factor: 11.598