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Whindleton, C. M.

Publications and source records attributed to Whindleton, C. M..

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TARP γ-8 is a target of ethanol that regulates self-administration and relapse in mice

BackgroundBehavioral pathologies that characterize alcohol use disorder (AUD) are driven by the powerful reinforcing, or rewarding, properties of the drug. We have shown that glutamate AMPA receptor (AMPAR) activity is both necessary and sufficient for alcohol (ethanol) reinforcement. Transmembrane AMPAR regulatory protein (TARP) {gamma}-8 is an essential auxiliary protein that regulates AMPAR expression and activity; however, the role of TARP {gamma}-8 in AUD or other forms of addiction remains largely unexplored. ObjectivesThis study investigated the mechanistic role of TARP {gamma}-8 in operant ethanol self-administration (model of primary reinforcement) and cue-induced reinstatement of ethanol-seeking behavior (model of conditioned reinforcement) using TARP {gamma}-8 heterozygous null (+/-) mice. To determine if TARP {gamma}-8 signaling is targeted by ethanol use, we evaluated protein expression of TARP {gamma}-8, GluA1, CaMKII, and PSD-95 following ethanol self-administration. ResultsA battery of tests evaluating food and water intake, taste reactivity, anxiety-like behavior, and object recognition memory showed no fundamental behavioral deficits in TARP {gamma}-8 (+/-) mice, and no differences in response to acute ethanol or home-cage drinking as compared to wild-types. However, TARP {gamma}-8 (+/-) mice exhibited significantly reduced acquisition and escalation of operant ethanol self-administration and reduced cue-induced reinstatement of ethanol-seeking behavior, with no differences in parallel sucrose-only controls. In wild-type mice, ethanol self-administration increased TARP {gamma}-8 expression in the amygdala, nucleus accumbens, and hippocampus, and increased GluA1 expression in the amygdala and prefrontal cortex, compared to sucrose controls. ConclusionThese findings highlight the specificity of TARP {gamma}-8 regulation of ethanol reinforcement mechanisms and identify this crucial AMPAR auxiliary protein as a target of ethanol in reward-related brain regions, highlighting its potential for development of novel pharmacotherapies for AUD.

neuroscience↗

Inhibition of AMPA receptors bound to transmembrane AMPA receptor regulatory protein γ-8 (TARP γ-8) blunts the positive reinforcing properties of alcohol and sucrose in a brain region-dependent manner

RationaleThe development and progression of alcohol use disorder (AUD) is widely viewed as maladaptive neuroplasticity. The transmembrane alpha-amino-3-hydroxy-5-methyl-4-isoxazole propionic acid receptor (AMPAR) regulatory protein {gamma}8 (TARP {gamma}-8) is a molecular mechanism of neuroplasticity that has not been evaluated in AUD or other addictions. ObjectiveTo address this gap in knowledge, we evaluated the mechanistic role of TARP {gamma}-8 bound AMPAR activity in the basolateral amygdala (BLA) and ventral CA3 hippocampus (vHPC) in the positive reinforcing effects of alcohol, which drive repetitive alcohol use throughout the course of AUD, in C57BL/6J mice. These brain regions were selected because they exhibit high levels of TARP {gamma}-8 expression and send glutamate projections to the nucleus accumbens (NAc), which is a key nucleus in the brain reward pathway. Methods and ResultsSite-specific pharmacological inhibition of AMPARs bound to TARP {gamma}-8 in the BLA via bilateral infusion of the selective negative modulator JNJ-55511118 significantly decreased operant alcohol self-administration with no effect on sucrose self-administration in behavior-matched controls. Temporal analysis showed that reduction of alcohol-reinforced responding occurred >25 min after the onset of responding, consistent with a blunting of the positive reinforcing effects of alcohol in the absence of nonspecific behavioral effects. In contrast, inhibition of TARP {gamma}-8 bound AMPARs in the vHPC selectively decreased sucrose self-administration with no effect on alcohol. ConclusionsThis study reveals a novel brain region-specific role of TARP {gamma}-8 bound AMPARs as a molecular mechanism of the positive reinforcing effects of alcohol and non-drug rewards.

neuroscience↗