Adenosine A2A Receptors Contribute to the Radial Migration of Cortical Projection Neurons through the Regulation of Neuronal Polarization and Axon Formation

Author:

Alçada-Morais Sofia12,Gonçalves Nélio1,Moreno-Juan Verónica3,Andres Belén3,Ferreira Sofia12,Marques Joana M1,Magalhães Joana1,Rocha João M M1,Xu Xinli12,Partidário Matilde1,Cunha Rodrigo A14,López-Bendito Guillermina3,Rodrigues Ricardo J12ORCID

Affiliation:

1. CNC—Center for Neuroscience and Cell Biology, University of Coimbra, Coimbra 3004-504, Portugal

2. Institute for Interdisciplinary Research, University of Coimbra, Coimbra 3030-789, Portugal

3. Instituto de Neurociencias, CSIC-UMH, San Juan de Alicante 03550, Spain

4. Faculty of Medicine, University of Coimbra, Coimbra 3004-504, Portugal

Abstract

Abstract Cortical interneurons born in the subpallium reach the cortex through tangential migration, whereas pyramidal cells reach their final position by radial migration. Purinergic signaling via P2Y1 receptors controls the migration of intermediate precursor cells from the ventricular zone to the subventricular zone. It was also reported that the blockade of A2A receptors (A2AR) controls the tangential migration of somatostatin+ interneurons. Here we found that A2AR control radial migration of cortical projection neurons. In A2AR-knockout (KO) mouse embryos or naïve mouse embryos exposed to an A2AR antagonist, we observed an accumulation of early-born migrating neurons in the lower intermediate zone at late embryogenesis. In utero knockdown of A2AR also caused an accumulation of neurons at the lower intermediate zone before birth. This entails the presently identified ability of A2AR to promote multipolar–bipolar transition and axon formation, critical for the transition of migrating neurons from the intermediate zone to the cortical plate. This effect seems to require extracellular ATP-derived adenosine since a similar accumulation of neurons at the lower intermediate zone was observed in mice lacking ecto-5′-nucleotidase (CD73-KO). These findings frame adenosine as a fine-tune regulator of the wiring of cortical inhibitory and excitatory networks.

Funder

Spanish Ministry of Science and Innovation

COMPETE

European Regional Development Fund

Publisher

Oxford University Press (OUP)

Subject

Cellular and Molecular Neuroscience,Cognitive Neuroscience

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