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Updated: Aug 12, 2025

Investigating Drivers of Antireward in Addiction Behavior with Anatomically Specific Single-Cell Gene Expression Methods
Published on: August 4, 2022
Dynamic Effects of Ventral Hippocampal NRG3/ERBB4 Signaling on Nicotine Withdrawal-Induced Responses
Miranda L Fisher1, Emily R Prantzalos1, Bernadette O'Donovan2
1Department of Pharmaceutical Sciences, University of Kentucky College of Pharmacy, Lexington, Kentucky, USA.
Abstract:
Tobacco smoking remains a leading cause of preventable death in the United States, with a less than 5% success rate for smokers attempting to quit. High relapse rates have been linked to several genetic factors, indicating that the mechanistic relationship between genes and drugs of abuse is a valuable avenue for the development of novel smoking cessation therapies. For example, various single nucleotide polymorphisms (SNPs) in the gene for neuregulin 3 (NRG3) and its cognate receptor, the receptor tyrosine-protein kinase erbB-4 (ERBB4), have been linked to nicotine addiction. Our lab has previously shown that ERBB4 plays a role in anxiety-like behavior during nicotine withdrawal (WD); however, the neuronal mechanisms and circuit-specific effects of NRG3-ERBB4 signaling during nicotine and WD are unknown. The present study utilizes genetic, biochemical, and functional approaches to examine the anxiety-related behavioral and functional role of NRG3-ERBB4 signaling, specifically in the ventral hippocampus (VH). We report that 24hWD from nicotine is associated with altered synaptic expression of VH NRG3 and ERBB4, and genetic disruption of VH ErbB4 leads to an elimination of anxiety-like behaviors induced during 24hWD. Moreover, we observed attenuation of GABAergic transmission as well as alterations in Ca2+-dependent network activity in the ventral CA1 area of VH ErbB4 knock-down mice during 24hWD. Our findings further highlight contributions of the NRG3-ERBB4 signaling pathway to anxiety-related behaviors seen during nicotine WD.
Insights
Genetic factors influence nicotine addiction and relapse. Disrupting the NRG3-ERBB4 signaling pathway in the ventral hippocampus reduces anxiety-like behaviors during nicotine withdrawal, offering potential smoking cessation targets.
Area of Science:
- Neuroscience
- Genetics
- Pharmacology
Background:
- Tobacco smoking is a major cause of preventable death with low cessation success rates.
- Genetic factors, including single nucleotide polymorphisms (SNPs) in neuregulin 3 (NRG3) and its receptor ERBB4, are linked to nicotine addiction.
- Previous research indicated ERBB4's role in anxiety during nicotine withdrawal, but underlying mechanisms were unclear.
Approach:
- Investigated the role of NRG3-ERBB4 signaling in anxiety-related behaviors during nicotine withdrawal using genetic, biochemical, and functional methods.
- Focused on the ventral hippocampus (VH) and its specific circuits.
- Examined synaptic expression, genetic disruption effects, and neuronal activity alterations.
Key Points:
- Nicotine withdrawal (WD) alters NRG3 and ERBB4 expression in the VH.
- Genetic disruption of ERBB4 in the VH eliminates anxiety-like behaviors during WD.
- ERBB4 disruption attenuates GABAergic transmission and alters Ca2+ network activity in the ventral CA1 during WD.
Conclusions:
- The NRG3-ERBB4 signaling pathway in the ventral hippocampus contributes to anxiety-related behaviors during nicotine withdrawal.
- Targeting this pathway may offer novel therapeutic strategies for smoking cessation.
- Findings elucidate specific neuronal mechanisms underlying nicotine addiction and withdrawal.
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