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Braccagni, G.

Publications and source records attributed to Braccagni, G..

2 recordsLinked to original sources

Prefrontal 5α-reductase 2 mediates male-specific acute stress response

A key response to acute stress is the increased brain synthesis of the neurosteroid allopregnanolone (AP). While the rate-limiting step of this reaction is catalyzed by 5-reductase (5R), the role of its two primary isoenzymes, 5R1 and 5R2, in stress reactivity remains unclear. Here, we found that acute stress led to increased levels of 5R2, but not 5R1, in the medial prefrontal cortex (mPFC) of male, but not female, rats. Downregulation of 5R2 in the mPFC significantly reduced stress response in males, and similar sexual dimorphic effects were observed in a novel line of 5R2 knockout rats. Notably, 5R1 regulated baseline AP synthesis, while 5R2 enabled AP production under stress. Acute AP administration restored stress response in 5R2 knockdown rats. Single-nucleus transcriptomics showed that 5R2 enabled stress-induced protein translation in neurons and glia. These results highlight the crucial role of 5R2 in mediating sex-specific differences in acute stress reactivity.

neuroscience↗

CELSR3 deficiency leads to tic-related behaviors and dopaminergic alterations in the striatum

The gene CELSR3 (Cadherin EGF LAG Seven-pass-G-type Receptor 3) has been recently recognized as a high-confidence risk factor for Tourette syndrome (TS). Additionally, Celsr3 mutant mice have been reported to exhibit TS-related behaviors and increased dopamine release in the striatum. Building on these findings, we further characterized the neurobehavioral and molecular profile of Celsr3 mutant mice to understand better the biological mechanisms connecting the deficiency of this gene and TS-related phenotypes. Our analyses confirmed that Celsr3 mutant mice displayed grooming stereotypies and tic-like jerks, as well as sensorimotor gating deficits, which were opposed by TS therapies. Spatial transcriptomic analyses revealed widespread extracellular matrix abnormalities in the striatum of Celsr3 mutants. Single-nucleus transcriptomics also showed significant upregulation of the Drd3 gene, encoding the dopamine D3 receptor, in striosomal D1-positive neurons. In situ hybridization and immunofluorescence confirmed dysregulated D3 receptor expression, with lower levels in presynaptic striatal fibers and higher levels in striatal D1-positive neurons. Activating and blocking D3 receptors amplified or decreased tic-like jerks and stereotypies in Celsr3-deficient mice, respectively. These findings suggest that modifications of D3 receptor distribution contribute to the tic-like responses associated with Celsr3 deficiency.

neuroscience↗