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Expression map of 78 brain-expressed mouse orphan GPCRs provides a translational resource for neuropsychiatric research.


ABSTRACT: Orphan G-protein-coupled receptors (oGPCRs) possess untapped potential for drug discovery. In the brain, oGPCRs are generally expressed at low abundance and their function is understudied. Expression profiling is an essential step to position oGPCRs in brain function and disease, however public databases provide only partial information. Here, we fine-map expression of 78 brain-oGPCRs in the mouse, using customized probes in both standard and supersensitive in situ hybridization. Images are available at http://ogpcr-neuromap.douglas.qc.ca. This searchable database contains over 8000 coronal brain sections across 1350 slides, providing the first public mapping resource dedicated to oGPCRs. Analysis with public mouse (60 oGPCRs) and human (56 oGPCRs) genome-wide datasets identifies 25 oGPCRs with potential to address emotional and/or cognitive dimensions of psychiatric conditions. We probe their expression in postmortem human brains using nanoString, and included data in the resource. Correlating human with mouse datasets reveals excellent suitability of mouse models for oGPCRs in neuropsychiatric research.

SUBMITTER: Ehrlich AT 

PROVIDER: S-EPMC6123746 | biostudies-literature | 2018

REPOSITORIES: biostudies-literature

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Expression map of 78 brain-expressed mouse orphan GPCRs provides a translational resource for neuropsychiatric research.

Ehrlich Aliza T AT   Maroteaux Grégoire G   Robe Anne A   Venteo Lydie L   Nasseef Md Taufiq MT   van Kempen Leon C LC   Mechawar Naguib N   Turecki Gustavo G   Darcq Emmanuel E   Kieffer Brigitte L BL  

Communications biology 20180806


Orphan G-protein-coupled receptors (oGPCRs) possess untapped potential for drug discovery. In the brain, oGPCRs are generally expressed at low abundance and their function is understudied. Expression profiling is an essential step to position oGPCRs in brain function and disease, however public databases provide only partial information. Here, we fine-map expression of 78 brain-oGPCRs in the mouse, using customized probes in both standard and supersensitive in situ hybridization. Images are avai  ...[more]

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