Cryo-correlative light and electron tomography of dopaminergic axonal varicosities reveals non-synaptic modulation of cortico-striatal synapses

P Paul Lapios R Robin Anger V Vincent Paget-Blanc E Esther Marza V Vladan Lučić R Rémi Fronzes (European Institute of Chemistry and Biology, CNRS UMR 5234 Microbiologie Fondamentale et Pathogénicité, Univ. Bordeaux) E Etienne Herzog D David Perrais

Abstract

Abstract Dopamine is an essential neuromodulator in the brain, involved in reward and motor control. Dopaminergic (DA) neurons project to most brain areas, with particularly dense innervation in the striatum. DA varicosities bind to target striatal synapses, forming dopamine hub synapses (DHS). However, the basic features of dopamine release sites are still largely unknown. Here we studied the ultrastructure of fluorescent DA and glutamatergic (GLU) synaptosomes isolated from the striatum of adult mice with cryo-correlative light and electron microscopy and cryo-electron tomography. We observed that DA synaptosomes display ~10 times fewer vesicles than GLU ones. DA vesicles are bigger and less round. The nanoscale organization of vesicles indicates that most GLU synaptosomes have tethered and primed vesicles, indicative of a readily releasable pool, while only 37% of DA synaptosomes have tethered vesicles, which appear not to be primed. In addition, GLU terminals contacted by DA terminals in DHS have more primed vesicles than others. While DA varicosities do not form genuine synapses, their adhesion to cortico-striatal synapses may convey a local regulation of synaptic release properties.

Article Details

Volume / Issue Vol. 16, Issue 1
Published December 13, 2025
ISSN 2041-1723
Publisher Nature Portfolio

Journal Info

Nature Communications

Nature Portfolio

ISSN: 2041-1723 Open Access Life Sciences

Authors (8)

P

Paul Lapios

R

Robin Anger

V

Vincent Paget-Blanc

E

Esther Marza

V

Vladan Lučić

R

Rémi Fronzes

European Institute of Chemistry and Biology, CNRS UMR 5234 Microbiologie Fondamentale et Pathogénicité, Univ. Bordeaux

E

Etienne Herzog

D

David Perrais