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Freitas, G. A.

Publications and source records attributed to Freitas, G. A..

2 recordsLinked to original sources

Reciprocal regulation of the H3 histamine receptor in Rett syndrome and MECP2 Duplication 1 syndrome: implications for therapeutic development

Rett syndrome (RTT) and MECP2 Duplication syndrome (MDS) are disorders caused by reciprocal decreases and increases in the expression of the transcriptional regulator, Methyl CpG Binding Protein 2 (MeCP2). We previously performed an mRNA expression profiling study of the temporal cortex region from patients diagnosed with RTT and corresponding age, postmortem interval, and sex-matched controls. These studies identified a significant reduction in the expression of the histamine H3 receptor (HRH3). In the current manuscript, we expanded this H3 receptor profiling to additional RTT patient brain samples representing distinct MECP2 mutations and confirmed significantly reduced levels of H3 receptor expression in the majority of patients compared to controls. Using mouse models of RTT and MDS, we observed antiparallel changes in H3 receptor expression across various brain areas, with Hrh3 expression being reduced in RTT model animals and increased in a mouse model of MDS. We then evaluated both a small molecule agonist of the H3 receptor, (R)--methylhistamine (RAMH), and the H3 receptor inverse agonist, pitolisant (Wakix(R)), in RTT and MDS models, respectively, to determine impacts on phenotypes in these disease models. Our results show that RAMH significantly impacted an anxiety phenotype in mice modeling RTT (MecpNull/+), but pitolisant had no effect on the behaviors examined here in MDS animals (MECP2Tg1).

neuroscience↗

Profiling metabotropic glutamate receptor 7 expression in Rett syndrome: consequences for pharmacotherapy

We have reported that levels of metabotropic glutamate receptor 7 (mGlu7) are dramatically decreased in brain samples from Rett syndrome patients carrying truncation mutations in the Methyl-CpG Binding Protein 2 (MECP2) gene. Additionally, we identified decreases in mGlu7 levels in Mecp2+/- female mice and demonstrated that administration of a positive allosteric modulator (PAM) with activity at mGlu7 corrected deficits in cognitive, social, and respiratory domains. Here, we expanded our studies to a larger cohort of RTT samples covering a range of mutations and evaluated expression of the three widely expressed group III mGlu receptors (mGlu4,7 and 8). We found significant decreases in mGlu7, but not mGlu4 or mGlu8, mRNA expression across this larger cohort; additionally, we identified a previously unknown and robust correlation in the expression of mGlu4 and mGlu8 in control individuals. Stratification of RTT patients into individuals with mutations that are clinically correlated with severe versus mild disease revealed statistically significant decreases in mGlu7 expression only in patients with mutations that induce more severe symptoms. We then administered the PAM VU0422288 to mice modeling the mild R306C mutation (Mecp2R306C/+) and found a significant reduction in apneas induced by VU0422888 administration despite no decreases in mGlu7 expression in the brainstem or cortex. These results provide the first evidence of potentially broad utility for mGlu7 PAMs in reducing apneas in RTT patients.

neuroscience↗