Adenosine A2B receptors differently modulate oligodendrogliogenesis and myelination depending on their cellular localization

Author:

Cherchi Federica1ORCID,Venturini Martina1ORCID,Magni Giada2ORCID,Frulloni Lucia1ORCID,Chieca Martina3ORCID,Buonvicino Daniela3ORCID,Santalmasi Clara1ORCID,Rossi Francesca2ORCID,De Logu Francesco3ORCID,Coppi Elisabetta1ORCID,Pugliese Anna Maria1ORCID

Affiliation:

1. Department of Neuroscience, Psychology, Drug Research and Child Health (NEUROFARBA) University of Florence Florence Italy

2. Cnr—Istituto di Fisica Applicata “Nello Carrara” Florence Italy

3. Department of Health Sciences, Section of Clinical Pharmacology and Oncology University of Florence Florence Italy

Abstract

AbstractDifferentiation of oligodendrocyte precursor cells (OPCs) into mature oligodendrocytes (OLs) is a key event for axonal myelination in the brain; this process fails during demyelinating pathologies. Adenosine is emerging as an important player in oligodendrogliogenesis, by activating its metabotropic receptors (A1R, A2AR, A2BR, and A3R). We previously demonstrated that the Gs‐coupled A2BR reduced differentiation of primary OPC cultures by inhibiting delayed rectifier (IK) as well as transient (IA) outward K+ currents. To deepen the unclear role of this receptor subtype in neuron‐OL interplay and in myelination process, we tested the effects of different A2BR ligands in a dorsal root ganglion neuron (DRGN)/OPC cocultures, a corroborated in vitro myelination assay. The A2BR agonist, BAY60‐6583, significantly reduced myelin basic protein levels but simultaneously increased myelination index in DRGN/OPC cocultures analyzed by confocal microscopy. The last effect was prevented by the selective A2BR antagonists, PSB‐603 and MRS1706. To clarify this unexpected data, we wondered whether A2BRs could play a functional role on DRGNs. We first demonstrated, by immunocytochemistry, that primary DRGN monoculture expressed A2BRs. Their selective activation by BAY60‐6583 enhanced DRGN excitability, as demonstrated by increased action potential firing, decreased rheobase and depolarized resting membrane potential and were prevented by PSB‐603. Throughout this A2BR‐dependent enhancement of neuronal activity, DRGNs could release factors to facilitate myelination processes. Finally, silencing A2BR in DRGNs alone prevents the increased myelination induced by BAY60‐6583 in cocultures. In conclusion, our data suggest a different role of A2BR during oligodendrogliogenesis and myelination, depending on their activation on neurons or oligodendroglial cells.

Funder

Università degli Studi di Firenze

Fondazione Italiana Sclerosi Multipla

Publisher

Wiley

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