Cerebellar 5HT-2A receptor mediates stress-induced onset of dystonia.
basic_science · Level V
Where this comes from
- Record sourced from PubMed, PMID 33658190.
- Also identified by DOI 10.1126/sciadv.abb5735 and PMC identifier 7929497.
- Licence recorded as CC BY-NC.
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Abstract
Stress is a key risk factor for dystonia, a debilitating motor disorder characterized by cocontractions of muscles leading to abnormal body posture. While the serotonin (5HT) system is known to control emotional responses to stress, its role in dystonia remains unclear. Here, we reveal that 5HT neurons in the dorsal raphe nuclei (DRN) send projections to the fastigial deep cerebellar nuclei (fDCN) and that photostimulation of 5HT-fDCN induces dystonia in wild-type mice. Moreover, we report that photoinhibition of 5HT-fDCN reduces dystonia in a1A <i><sup>tot/tot</sup></i> mice, a genetic model of stress-induced dystonia, and administration of a 5HT-2A receptor inverse agonist (MDL100907; 0.1 to 1 mg/kg) or shRNA-mediated knockdown of the <i>ht2ar</i> gene in fDCN can notably reduce the onset of dystonia in a1A <i><sup>tot/tot</sup></i> mice. These results support the serotonin theory of dystonia and suggest strategies for alleviating symptoms in human patients by blocking 5HT-2A receptors.