| Literature DB >> 30108503 |
Anna R Zuena1, Luisa Iacovelli1, Rosamaria Orlando1, Luisa Di Menna2, Paola Casolini1, Giovanni Sebastiano Alemà1, Gabriele Di Cicco1, Giuseppe Battaglia2, Ferdinando Nicoletti1,2.
Abstract
mGlu5 receptor-mediated polyphosphoinositide (PI) hydrolysis is classically measured by determining the amount of radioactivity incorporated in inositolmonophosphate (InsP) after labeling of membrane phospholipids with radioactive inositol. Although this method is historically linked to the study of mGlu receptors, it is inappropriate for the assessment of mGlu5 receptor signaling in vivo. Using a new ELISA kit we showed that systemic treatment with the selective positive allosteric modulator (PAM) of mGlu5 receptors VU0360172 enhanced InsP formation in different brain regions of CD1 or C57Black mice. The action of VU0360172 was sensitive to the mGlu5 receptor, negative allosteric modulator (NAM), MTEP, and was abolished in mice lacking mGlu5 receptors. In addition, we could demonstrate that endogenous activation of mGlu5 receptors largely accounted for the basal PI hydrolysis particularly in the prefrontal cortex. This method offers opportunity for investigation of mGlu5 receptor signaling in physiology and pathology, and could be used for the functional screening of mGlu5 receptor PAMs in living animals.Entities:
Keywords: InsP levels; MTEP; VU0360172; mGlu5 receptors; polyphosphoinositide hydrolysis; receptor signaling
Year: 2018 PMID: 30108503 PMCID: PMC6079191 DOI: 10.3389/fphar.2018.00804
Source DB: PubMed Journal: Front Pharmacol ISSN: 1663-9812 Impact factor: 5.810
Basal levels of endogenous InsP in different brain regions of CD1 mice.
| Brain regions | InsP levels (nM) |
|---|---|
| Hippocampus | 6950 ± 244 |
| Prefrontal cortex | 17215 ± 1148∗ |
| Striatum | 6446 ± 601 |
| Hypothalamus | 4124 ± 238 |
| Olfactory bulb | 4349 ± 288 |
| Cerebellum | 1154 ± 213 |