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Chemical Modulation of Mutant mGlu(1) Receptors Derived from Deleterious GRM1 Mutations Found in Schizophrenics

[Image: see text] Schizophrenia is a complex and highly heterogeneous psychiatric disorder whose precise etiology remains elusive. While genome-wide association studies (GWAS) have identified risk genes, they have failed to determine if rare coding single nucleotide polymorphisms (nsSNPs) contribute...

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Autores principales: Cho, Hyekyung P., Garcia-Barrantes, Pedro M., Brogan, John T., Hopkins, Corey R., Niswender, Colleen M., Rodriguez, Alice L., Venable, Daryl F., Morrison, Ryan D., Bubser, Michael, Daniels, J. Scott, Jones, Carrie K., Conn, P. Jeffrey, Lindsley, Craig W.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2014
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4201332/
https://www.ncbi.nlm.nih.gov/pubmed/25137254
http://dx.doi.org/10.1021/cb500560h
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author Cho, Hyekyung P.
Garcia-Barrantes, Pedro M.
Brogan, John T.
Hopkins, Corey R.
Niswender, Colleen M.
Rodriguez, Alice L.
Venable, Daryl F.
Morrison, Ryan D.
Bubser, Michael
Daniels, J. Scott
Jones, Carrie K.
Conn, P. Jeffrey
Lindsley, Craig W.
author_facet Cho, Hyekyung P.
Garcia-Barrantes, Pedro M.
Brogan, John T.
Hopkins, Corey R.
Niswender, Colleen M.
Rodriguez, Alice L.
Venable, Daryl F.
Morrison, Ryan D.
Bubser, Michael
Daniels, J. Scott
Jones, Carrie K.
Conn, P. Jeffrey
Lindsley, Craig W.
author_sort Cho, Hyekyung P.
collection PubMed
description [Image: see text] Schizophrenia is a complex and highly heterogeneous psychiatric disorder whose precise etiology remains elusive. While genome-wide association studies (GWAS) have identified risk genes, they have failed to determine if rare coding single nucleotide polymorphisms (nsSNPs) contribute in schizophrenia. Recently, two independent studies identified 12 rare, deleterious nsSNPS in the GRM1 gene, which encodes the metabotropic glutamate receptor subtype 1 (mGlu(1)), in schizophrenic patients. Here, we generated stable cell lines expressing the mGlu(1) mutant receptors and assessed their pharmacology. Using both the endogenous agonist glutamate and the synthetic agonist DHPG, we found that several of the mutant mGlu(1) receptors displayed a loss of function that was not due to a loss in plasma membrane expression. Due to a lack of mGlu(1) positive allosteric modulators (PAM) tool compounds active at human mGlu(1), we optimized a known mGlu(4) PAM/mGlu(1) NAM chemotype into a series of potent and selective mGlu(1) PAMs by virtue of a double “molecular switch”. Employing mGlu(1) PAMs from multiple chemotypes, we demonstrate that the mutant receptors can be potentiated by small molecules and in some cases efficacy restored to that comparable to wild type mGlu(1) receptors, suggesting deficits in patients with schizophrenia due to these mutations may be amenable to intervention with an mGlu(1) PAM. However, in wild type animals, mGlu(1) negative allosteric modulators (NAMs) are efficacious in classic models predictive of antipsychotic activity, whereas we show that mGlu(1) PAMs have no effect to slight potentiation in these models. These data further highlight the heterogeneity of schizophrenia and the critical role of patient selection strategies in psychiatric clinical trials to match genotype with therapeutic mechanism.
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spelling pubmed-42013322014-10-21 Chemical Modulation of Mutant mGlu(1) Receptors Derived from Deleterious GRM1 Mutations Found in Schizophrenics Cho, Hyekyung P. Garcia-Barrantes, Pedro M. Brogan, John T. Hopkins, Corey R. Niswender, Colleen M. Rodriguez, Alice L. Venable, Daryl F. Morrison, Ryan D. Bubser, Michael Daniels, J. Scott Jones, Carrie K. Conn, P. Jeffrey Lindsley, Craig W. ACS Chem Biol [Image: see text] Schizophrenia is a complex and highly heterogeneous psychiatric disorder whose precise etiology remains elusive. While genome-wide association studies (GWAS) have identified risk genes, they have failed to determine if rare coding single nucleotide polymorphisms (nsSNPs) contribute in schizophrenia. Recently, two independent studies identified 12 rare, deleterious nsSNPS in the GRM1 gene, which encodes the metabotropic glutamate receptor subtype 1 (mGlu(1)), in schizophrenic patients. Here, we generated stable cell lines expressing the mGlu(1) mutant receptors and assessed their pharmacology. Using both the endogenous agonist glutamate and the synthetic agonist DHPG, we found that several of the mutant mGlu(1) receptors displayed a loss of function that was not due to a loss in plasma membrane expression. Due to a lack of mGlu(1) positive allosteric modulators (PAM) tool compounds active at human mGlu(1), we optimized a known mGlu(4) PAM/mGlu(1) NAM chemotype into a series of potent and selective mGlu(1) PAMs by virtue of a double “molecular switch”. Employing mGlu(1) PAMs from multiple chemotypes, we demonstrate that the mutant receptors can be potentiated by small molecules and in some cases efficacy restored to that comparable to wild type mGlu(1) receptors, suggesting deficits in patients with schizophrenia due to these mutations may be amenable to intervention with an mGlu(1) PAM. However, in wild type animals, mGlu(1) negative allosteric modulators (NAMs) are efficacious in classic models predictive of antipsychotic activity, whereas we show that mGlu(1) PAMs have no effect to slight potentiation in these models. These data further highlight the heterogeneity of schizophrenia and the critical role of patient selection strategies in psychiatric clinical trials to match genotype with therapeutic mechanism. American Chemical Society 2014-08-19 2014-10-17 /pmc/articles/PMC4201332/ /pubmed/25137254 http://dx.doi.org/10.1021/cb500560h Text en Copyright © 2014 American Chemical Society
spellingShingle Cho, Hyekyung P.
Garcia-Barrantes, Pedro M.
Brogan, John T.
Hopkins, Corey R.
Niswender, Colleen M.
Rodriguez, Alice L.
Venable, Daryl F.
Morrison, Ryan D.
Bubser, Michael
Daniels, J. Scott
Jones, Carrie K.
Conn, P. Jeffrey
Lindsley, Craig W.
Chemical Modulation of Mutant mGlu(1) Receptors Derived from Deleterious GRM1 Mutations Found in Schizophrenics
title Chemical Modulation of Mutant mGlu(1) Receptors Derived from Deleterious GRM1 Mutations Found in Schizophrenics
title_full Chemical Modulation of Mutant mGlu(1) Receptors Derived from Deleterious GRM1 Mutations Found in Schizophrenics
title_fullStr Chemical Modulation of Mutant mGlu(1) Receptors Derived from Deleterious GRM1 Mutations Found in Schizophrenics
title_full_unstemmed Chemical Modulation of Mutant mGlu(1) Receptors Derived from Deleterious GRM1 Mutations Found in Schizophrenics
title_short Chemical Modulation of Mutant mGlu(1) Receptors Derived from Deleterious GRM1 Mutations Found in Schizophrenics
title_sort chemical modulation of mutant mglu(1) receptors derived from deleterious grm1 mutations found in schizophrenics
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4201332/
https://www.ncbi.nlm.nih.gov/pubmed/25137254
http://dx.doi.org/10.1021/cb500560h
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