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Folkes, O. M.

Publications and source records attributed to Folkes, O. M..

2 recordsLinked to original sources

Social Novelty Recruits a Dysfunctional Nucleus Accumbens Ensemble That Drives Social Avoidance in a Shank3-/- Autism Model

Social behavior deficits are a common symptom of neuropsychiatric disorders, including autism spectrum disorder (ASD), but there are limited pharmacological treatments for these symptoms. Understanding how neurons encode social information will give insight into identifying novel pharmacological targets to address this unmet need. SHANK3 encodes a postsynaptic scaffold protein and is a common risk gene for several neuropsychiatric disorders characterized by social deficits, including ASD. Our lab previously developed the Shank3{Delta}e4-22 mouse model, which shows a loss of social preference and altered connectivity in the nucleus accumbens (NAc), a critical region for social behaviors. However, it remains unknown how Shank3 deletion alters the encoding of social cues in the NAc. To address this gap in knowledge, we characterized the function of neurons activated by social interaction, or social ensembles, in WT and Shank3{Delta}e4-22 mice using a combination of genetic capture techniques, chemogenetics, optogenetics, and one-photon calcium imaging. We show that NAc social ensembles of WTs and Shank3{Delta}e4-22 mice drive opposing social behaviors: while NAc social ensembles encode appetitive social cues in WT mice, they encode avoidance in Shank3{Delta}e4-22 mice. We further find that, in Shank3{Delta}e4-22 mice, NAc neurons are hyperactive and have hypermodulatory responses to social novelty. Suppressing the activity of social ensembles during social novelty prevents future social avoidance and restores social investigation in Shank3{Delta}e4-22 mice. Taken together, our data show that Shank3{Delta}e4-22 mice have an enhanced NAc response to social novelty that actively drives social aversion, rather than a loss of social motivation.

neuroscience↗

Deficiency of Shank3 in the Nucleus Accumbens Reveals a Loss of Social-Specific Motivation

Deficits in social interaction are a hallmark symptom of autism and other neuropsychiatric disorders. SHANK3 encodes a postsynaptic density scaffold protein and is one of the most common causal genes for autism. SHANK3 protein is highly expressed in the nucleus accumbens (NAc), a critical brain region underlying motivated behavior, including social motivation. We previously reported that global Shank3{Delta}e4-22 deletion mice have decreased motivation for palatable food, increased unilateral social investigation, and show a hypoactive NAc and NAc-connected circuits. We thus developed a new Shank3flox/floxmouse tool to conditionally knockdown SHANK3 in a region-specific manner. We found that knockdown of Shank3 in the NAc decreased social preference in the 3-chamber assay and decreased social motivation in the social conditioned place preference (sCPP) assay. Shank3-NAc deletion did not alter food reward seeking, reciprocal social investigation, or anxiety-like behaviors, that we report in global Shank3{Delta}e4-22 deletion mice. These data establish a novel and specific role of Shank3 in the NAc on social motivation.

neuroscience↗