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1.
Nat Commun ; 13(1): 3102, 2022 06 03.
Article in English | MEDLINE | ID: mdl-35660742

ABSTRACT

Dopamine transmission is involved in reward processing and motor control, and its impairment plays a central role in numerous neurological disorders. Despite its strong pathophysiological relevance, the molecular and structural organization of the dopaminergic synapse remains to be established. Here, we used targeted labelling and fluorescence activated sorting to purify striatal dopaminergic synaptosomes. We provide the proteome of dopaminergic synapses with 57 proteins specifically enriched. Beyond canonical markers of dopamine neurotransmission such as dopamine biosynthetic enzymes and cognate receptors, we validated 6 proteins not previously described as enriched. Moreover, our data reveal the adhesion of dopaminergic synapses to glutamatergic, GABAergic or cholinergic synapses in structures we named "dopamine hub synapses". At glutamatergic synapses, pre- and postsynaptic markers are significantly increased upon association with dopamine synapses. Dopamine hub synapses may thus support local dopaminergic signalling, complementing volume transmission thought to be the major mechanism by which monoamines modulate network activity.


Subject(s)
Dopamine , Synapses , Animals , Corpus Striatum/physiology , Dopamine/metabolism , Mice , Reward , Synapses/metabolism , Synaptic Transmission/physiology
2.
Cell Rep ; 36(10): 109678, 2021 09 07.
Article in English | MEDLINE | ID: mdl-34496238

ABSTRACT

The endosomal recycling system dynamically tunes synaptic strength, which underlies synaptic plasticity. Exocytosis is involved in the expression of long-term potentiation (LTP), as postsynaptic cleavage of the SNARE (soluble NSF-attachment protein receptor) protein VAMP2 by tetanus toxin blocks LTP. Moreover, induction of LTP increases the exocytosis of transferrin receptors (TfRs) and markers of recycling endosomes (REs), as well as post-synaptic AMPA type receptors (AMPARs). However, the interplay between AMPAR and TfR exocytosis remains unclear. Here, we identify VAMP4 as the vesicular SNARE that mediates most dendritic RE exocytosis. In contrast, VAMP2 plays a minor role in RE exocytosis. LTP induction increases the exocytosis of both VAMP2- and VAMP4-labeled organelles. Knock down (KD) of VAMP4 decreases TfR recycling but increases AMPAR recycling. Moreover, VAMP4 KD increases AMPAR-mediated synaptic transmission, which consequently occludes LTP expression. The opposing changes in AMPAR and TfR recycling upon VAMP4 KD reveal their sorting into separate endosomal populations.


Subject(s)
Dendrites/metabolism , Neuronal Plasticity/physiology , Neurons/metabolism , R-SNARE Proteins/metabolism , Vesicle-Associated Membrane Protein 2/metabolism , Animals , Endosomes/metabolism , Excitatory Postsynaptic Potentials/physiology , Exocytosis/physiology , Female , Male , Rats, Sprague-Dawley , Synapses/metabolism , Synaptic Transmission/physiology
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