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Higher dopamine D1 receptor expression in prefrontal parvalbumin neurons underlies higher distractibility in marmosets versus macaques

  • Mary Kate P Joyce
  • , Tsvetoslav G Ivanov
  • , Fenna M Krienen
  • , Jude F Mitchell
  • , Shaojie Ma
  • , Wataru Inoue
  • , Anirvan S Nandy
  • , Dibyadeep Datta
  • , Alvaro Duque
  • , Jon I Arellano
  • , Rahul Gupta
  • , Guillermo Gonzalez-Burgos
  • , David A Lewis
  • , Nenad Sestan
  • , Steven A McCarroll
  • , Julio Martinez-Trujillo
  • , Seán Froudist-Walsh*
  • , Amy F T Arnsten*
  • *Corresponding author for this work

Research output: Contribution to journalArticle (Academic Journal)peer-review

2 Citations (Scopus)

Abstract

Marmosets and macaques are common nonhuman primate models of cognition, yet marmosets appear more distractible and perform worse in cognitive tasks. The dorsolateral prefrontal cortex (dlPFC) is pivotal for sustained attention, and research in macaques suggests that dopaminergic modulation and inhibitory parvalbumin (PV) neurons could influence distractor resistance. Here we compare the two species using a visual fixation task with distractors, perform molecular and anatomical analyses in dlPFC, and link functional microcircuitry with cognitive performance using computational modeling. We show that marmosets are more distractible than macaques, and that marmoset dlPFC PV neurons contain higher levels of dopamine D1 receptor (D1R) transcripts and protein, similar to levels in mice. Our modeling indicates that higher D1R expression in marmoset dlPFC PV neurons may increase distractibility by making dlPFC microcircuits more vulnerable to disruptions of their task-related persistent activity, especially when dopamine is released in dlPFC in response to unexpected salient stimuli.
Original languageEnglish
Article number974
Number of pages26
JournalCommunications Biology
Volume8
Issue number1
DOIs
Publication statusPublished - 1 Jul 2025

Bibliographical note

Publisher Copyright:
© The Author(s) 2025.

Keywords

  • Animals
  • Prefrontal Cortex/metabolism
  • Receptors, Dopamine D1/metabolism
  • Callithrix/physiology
  • Parvalbumins/metabolism
  • Neurons/metabolism
  • Male
  • Attention/physiology
  • Female
  • Macaca/physiology
  • Cognition
  • Macaca mulatta

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