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Updated: May 1, 2026

Author Spotlight: Hypothalamic Neural Mechanism Insights
Published on: August 4, 2023
Emotional regulatory function of receptor interacting protein 140 revealed in the ventromedial hypothalamus
S Flaisher-Grinberg1, H C Tsai2, X Feng1
1Department of Pharmacology, University of Minnesota Medical School, Minneapolis, MN 55455, USA.
Abstract:
Receptor-interacting protein (RIP140) is a transcription co-regulator highly expressed in macrophages to regulate inflammatory and metabolic processes. However, its implication in neurological, cognitive and emotional conditions, and the cellular systems relevant to its biological activity within the central nervous system are currently less clear. A transgenic mouse line with macrophage-specific knockdown of RIP140 was generated (MΦRIPKD mice) and brain-region specific RIP140 knockdown efficiency evaluated. Mice were subjected to a battery of tests, designed to evaluate multiple behavioral domains at naïve or following site-specific RIP140 re-expression. Gene expression analysis assessed TNF-α, IL-1β, TGF-1β, IL1-RA and neuropeptide Y (NPY) expression, and in vitro studies examined the effects of macrophage's RIP140 on astrocytes' NPY production. We found that RIP140 expression was dramatically reduced in macrophages within the ventromedial hypothalamus (VMH) and the cingulate cortex of MΦRIPKD mice. These animals exhibited increased anxiety- and depressive-like behaviors. VMH-targeted RIP140 re-expression in MΦRIPKD mice reversed its depressive- but not its anxiety-like phenotype. Analysis of specific neurochemical changes revealed reduced astrocytic-NPY expression within the hypothalamus of MΦRIPKD mice, and in vitro analysis confirmed that conditioned medium of RIP140-silnenced macrophage culture could no longer stimulate NPY production from astrocytes. The current study revealed an emotional regulatory function of macrophage-derived RIP140 in the VMH, and secondary dysregulation of NPY within hypothalamic astrocyte population, which might be associated with the observed behavioral phenotype of MΦRIPKD mice. This study highlights RIP140 as a novel target for the development of potential therapeutic and intervention strategies for emotional regulation disorders.
Insights
Macrophage receptor-interacting protein (RIP140) in the brain regulates emotional behaviors. Reduced RIP140 in macrophages leads to anxiety and depression, linked to altered neuropeptide Y (NPY) in astrocytes.
Area of Science:
- Neuroscience
- Immunology
- Endocrinology
Background:
- Receptor-interacting protein (RIP140) is a transcription co-regulator crucial for macrophage inflammatory and metabolic functions.
- The role of RIP140 in the central nervous system, particularly in neurological, cognitive, and emotional regulation, remains largely unexplored.
- Understanding macrophage-specific RIP140 functions in the brain is essential for elucidating its impact on behavior.
Purpose of the Study:
- To investigate the role of macrophage-specific RIP140 in the brain's emotional regulatory circuits.
- To determine the effects of RIP140 knockdown in macrophages on anxiety- and depressive-like behaviors.
- To explore the underlying neurochemical mechanisms, including neuropeptide Y (NPY) regulation, in astrocytes.
Main Methods:
- Generation of a transgenic mouse model with macrophage-specific RIP140 knockdown (MΦRIPKD mice).
- Behavioral testing battery to assess anxiety- and depressive-like phenotypes.
- Brain region-specific analysis of RIP140 expression, gene expression (TNF-α, IL-1β, TGF-1β, IL1-RA, NPY), and in vitro macrophage-astrocyte co-culture studies.
Main Results:
- RIP140 expression was significantly reduced in macrophages of the ventromedial hypothalamus (VMH) and cingulate cortex in MΦRIPKD mice.
- MΦRIPKD mice displayed increased anxiety- and depressive-like behaviors.
- Re-expression of RIP140 in the VMH ameliorated depressive-like behavior, and reduced astrocytic NPY expression was observed, with macrophages influencing astrocyte NPY production.
Conclusions:
- Macrophage-derived RIP140 in the VMH plays a critical role in emotional regulation.
- Dysregulation of RIP140 in macrophages leads to altered hypothalamic NPY signaling in astrocytes, contributing to behavioral deficits.
- RIP140 represents a potential therapeutic target for emotional regulation disorders.
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