Hypothalamic opsin 3 suppresses MC4R signaling and potentiates Kir7.1 to promote food consumption

H Hala K. Haddad (Division of Biology and Medicine, Department of Neuroscience, Brown University) J Jonathan I. Mercado-Reyes (Division of Pediatric Ophthalmology, Abrahamson Pediatric Eye Institute, and Science of Light Center, Cincinnati Children’s Hospital Medical Center) E E. Román Mustafá (Electrophysiology Lab, Instituto Multidisciplinario de Biología Celular) S Shane P. D’Souza (Division of Pediatric Ophthalmology, Abrahamson Pediatric Eye Institute, and Science of Light Center, Cincinnati Children’s Hospital Medical Center) C C. Sean Chung (Division of Biology and Medicine, Department of Neuroscience, Brown University) R Ramses R. M. Nestor (Division of Biology and Medicine, Department of Neuroscience, Brown University) L Lauren E. Olinski (Division of Biology and Medicine, Department of Neuroscience, Brown University) V Valentina Martinez Damonte (Department of Psychiatry and Behavioral Sciences, Stanford University School of Medicine) J Joshua Saskin (Division of Biology and Medicine, Department of Neuroscience, Brown University) S Shruti Vemaraju (Division of Pediatric Ophthalmology, Abrahamson Pediatric Eye Institute, and Science of Light Center, Cincinnati Children’s Hospital Medical Center) J Jesica Raingo (Electrophysiology Lab, Instituto Multidisciplinario de Biología Celular) J Julie A. Kauer (Department of Psychiatry and Behavioral Sciences, Stanford University School of Medicine) R Richard A. Lang (Division of Pediatric Ophthalmology, Abrahamson Pediatric Eye Institute, and Science of Light Center, Cincinnati Children’s Hospital Medical Center) E Elena Oancea (Division of Biology and Medicine, Department of Neuroscience, Brown University)

Abstract

Mammalian opsin 3 (OPN3) is a member of the opsin family of G-protein-coupled receptors with ambiguous light sensitivity. OPN3 was first identified in the brain (and named encephalopsin) and subsequently found to be expressed in other tissues. In adipocytes, OPN3 is necessary for light responses that modulate lipolysis and glucose uptake, while OPN3 in human skin melanocytes regulates pigmentation in a light-independent manner. Despite its initial discovery in the brain, OPN3 functional mechanisms in the brain remain elusive. Here, we investigated the molecular mechanism of OPN3 function in the paraventricular nucleus (PVN) of the hypothalamus. We show that Opn3 is coexpressed with the melanocortin 4 receptor ( Mc4r ) in a population of PVN neurons, where it negatively regulates MC4R-mediated cAMP signaling in a specific and Gα i/o -dependent manner. Under baseline conditions, OPN3 via Gα i/o potentiates the activity of the inward rectifying Kir7.1 channel, previously shown to be closed in response to agonist-mediated activation of MC4R in a Gα s -independent manner. In mice, we found that Opn3 in Mc4r -expressing neurons regulates food consumption. Our results reveal the first mechanistic insight into OPN3 function in the hypothalamus, uncovering a unique mechanism by which OPN3 functions to potentiate Kir7.1 activity and negatively regulate MC4R-mediated cAMP signaling, thereby promoting food intake.

Article Details

Volume / Issue Vol. 122, Issue 8
Published February 25, 2025
ISSN 0027-8424
Publisher National Academy of Sciences

Authors (14)

H

Hala K. Haddad

Division of Biology and Medicine, Department of Neuroscience, Brown University

J

Jonathan I. Mercado-Reyes

Division of Pediatric Ophthalmology, Abrahamson Pediatric Eye Institute, and Science of Light Center, Cincinnati Children’s Hospital Medical Center

E

E. Román Mustafá

Electrophysiology Lab, Instituto Multidisciplinario de Biología Celular

S

Shane P. D’Souza

Division of Pediatric Ophthalmology, Abrahamson Pediatric Eye Institute, and Science of Light Center, Cincinnati Children’s Hospital Medical Center

C

C. Sean Chung

Division of Biology and Medicine, Department of Neuroscience, Brown University

R

Ramses R. M. Nestor

Division of Biology and Medicine, Department of Neuroscience, Brown University

L

Lauren E. Olinski

Division of Biology and Medicine, Department of Neuroscience, Brown University

V

Valentina Martinez Damonte

Department of Psychiatry and Behavioral Sciences, Stanford University School of Medicine

J

Joshua Saskin

Division of Biology and Medicine, Department of Neuroscience, Brown University

S

Shruti Vemaraju

Division of Pediatric Ophthalmology, Abrahamson Pediatric Eye Institute, and Science of Light Center, Cincinnati Children’s Hospital Medical Center

J

Jesica Raingo

Electrophysiology Lab, Instituto Multidisciplinario de Biología Celular

J

Julie A. Kauer

Department of Psychiatry and Behavioral Sciences, Stanford University School of Medicine

R

Richard A. Lang

Division of Pediatric Ophthalmology, Abrahamson Pediatric Eye Institute, and Science of Light Center, Cincinnati Children’s Hospital Medical Center

E

Elena Oancea

Division of Biology and Medicine, Department of Neuroscience, Brown University