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Loss of habenular Prkar2a reduces hedonic eating and increases exercise motivation
Edra London, Jason C. Wester, Michelle Bloyd, Shelby Bettencourt, Chris J. McBain, Constantine A. Stratakis
Edra London, Jason C. Wester, Michelle Bloyd, Shelby Bettencourt, Chris J. McBain, Constantine A. Stratakis
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Research Article Metabolism Neuroscience

Loss of habenular Prkar2a reduces hedonic eating and increases exercise motivation

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Abstract

The habenula (Hb) is a bilateral, evolutionarily conserved epithalamic structure connecting forebrain and midbrain structures that has gained attention for its roles in depression, addiction, rewards processing, and motivation. Of its 2 major subdivisions, the medial Hb (MHb) and lateral Hb (LHb), MHb circuitry and function are poorly understood relative to those of the LHb. Prkar2a codes for cAMP-dependent protein kinase (PKA) regulatory subunit IIα (RIIα), a component of the PKA holoenzyme at the center of one of the major cell-signaling pathways conserved across systems and species. Type 2 regulatory subunits (RIIα, RIIβ) determine the subcellular localization of PKA, and unlike other PKA subunits, Prkar2a has minimal brain expression except in the MHb. We previously showed that RIIα-knockout (RIIα-KO) mice resist diet-induced obesity. In the present study, we report that RIIα-KO mice have decreased consumption of palatable, “rewarding” foods and increased motivation for voluntary exercise. Prkar2a deficiency led to decreased habenular PKA enzymatic activity and impaired dendritic localization of PKA catalytic subunits in MHb neurons. Reexpression of Prkar2a in the Hb rescued this phenotype, confirming differential roles for Prkar2a in regulating the drives for palatable foods and voluntary exercise. Our findings show that in the MHb decreased PKA signaling and dendritic PKA activity decrease motivation for palatable foods, while enhancing the motivation for exercise, a desirable combination of behaviors.

Authors

Edra London, Jason C. Wester, Michelle Bloyd, Shelby Bettencourt, Chris J. McBain, Constantine A. Stratakis

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Figure 4

RIIα-KO mice had decreased motivation for food rewards, sucrose solution intake, and sucrose preference compared with WT mice; differences were influenced by sex.

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RIIα-KO mice had decreased motivation for food rewards, sucrose solution...
(A) Amount of time spent engaged in a progressive ratio (PR) operant task, (B) breakpoint, and (C) number of food pellets earned by WT and RIIα-KO littermates during PR operant task in fed and fasted states; n= 7–8/group, (female mice), analyzed by unpaired 2-way t tests. (D) Average daily intake of 10% sucrose solution of female and male RIIα-KO and WT mice; repeated-measure 2-way ANOVA with multiple comparisons (Bonferroni’s post hoc test) and (E) sucrose preference, measured as (daily sucrose solution intake [g]/total fluid intake [g]) × 100; sucrose intake and preference analyzed by repeated-measure 2-way ANOVA with multiple comparisons (Bonferroni’s post hoc test). (F) Cumulative total energy intake adjusted for body weight for female and male mice during 2-week experiment, measured as (sucrose kcal + chow kcal)/g BW, analyzed by 2-way unpaired t test (male) and Mann-Whitney nonparametric rank test (female). (G) Change in body weight during the 2-week sucrose intake experiment, analyzed by 2-way unpaired t test (male) and Mann-Whitney (female). For sucrose studies, n = 9–12/sex/group. All data are mean ± SEM; *P < 0.05; **P < 0.01, ****P < 0.0001.

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