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Protter, D. S.

Publications and source records attributed to Protter, D. S..

2 recordsLinked to original sources

Oxytocin and Dopamine Receptor Expression: Cellular Level Implications for Pair Bonding

Oxytocin (Oxtr) and dopamine (Drd1, Drd2) receptors provide a canonical example for how differences in neuromodulatory receptors drive individual and species-level behavioral variation. These systems exhibit striking and functionally-relevant differences in nucleus accumbens (NAc) expression across monogamous prairie voles (Microtus ochrogaster) and promiscuous meadow voles (Microtus pennsylvanicus). However, their cellular organization remains largely unknown. Using multiplex in situ hybridization, we mapped Oxtr, Drd1, and Drd2 expression in sexually naive and mate-paired prairie and meadow voles. Prairie voles have more Oxtr+ cells than meadow voles, but Oxtr distribution across dopamine-receptor cell class was similar, indicating a general upregulation rather than cell class bias. Oxtr was enriched in cells that express both dopamine receptors (Drd1+/Drd2+) in prairie voles, suggesting these cells may be particularly sensitive to oxytocin. We found no species or pairing-induced differences in Drd1+ or Drd2+ cell counts, suggesting prior reports of expression differences may reflect upregulation in cells already expressing these receptors. Finally, we used single-nucleus sequencing to provide the first comprehensive map of Oxtr and Drd1-5 across molecularly-defined NAc cell types in the prairie vole. These results provide a critical framework for understanding how nonapeptide and catecholamine systems may recruit distinct NAc cell types to shape social behavior.

neuroscience↗

Nucleus accumbens dopamine release reflects the selective nature of pair bonds

In monogamous species, prosocial behaviors directed towards partners are dramatically different from those directed towards unknown individuals and potential threats. Dopamine release in the nucleus accumbens plays an important role in guiding social behavior, however, its role in real time social decision making in a monogamous species remains largely unknown. We used monogamous prairie voles to investigate how dopamine release differs in voles when seeking and interacting with a pair bonded partner or a novel vole. Employing the sub-second temporal resolution of the fluorescent biosensor, GRABDA, during a social operant task, we found that partner seeking, anticipation, and interaction resulted in more dopamine release than the same events directed towards a novel vole. Furthermore, partner-elicited dopamine release decreases after prolonged partner separation. Thus, differences in partner- and novel-elicited dopamine release reflect the selective nature of pair bonds and may drive the social behaviors that reinforce and cement bonds over time, eroding after partner loss to facilitate new bond formation.

neuroscience↗