D-AP4 [Ligand Id: 1443] activity data from GtoPdb and ChEMBL

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ChEMBL ligand: CHEMBL1319383
  • mGlu4 receptor/Metabotropic glutamate receptor 4 in Rat [ChEMBL: CHEMBL2787] [GtoPdb: 292] [UniProtKB: P31423]
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  • mGlu6 receptor/Metabotropic glutamate receptor 6 in Rat [ChEMBL: CHEMBL3842] [GtoPdb: 294] [UniProtKB: P35349]
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  • mGlu7 receptor/Metabotropic glutamate receptor 7 in Rat [ChEMBL: CHEMBL3879] [GtoPdb: 295] [UniProtKB: P35400]
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  • mGlu8 receptor in Human [GtoPdb: 296] [UniProtKB: O00222]
  • mGlu8 receptor/Metabotropic glutamate receptor 8 in Rat [ChEMBL: CHEMBL2718] [GtoPdb: 296] [UniProtKB: P70579]
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DB Assay description Assay Type Standard value Standard parameter Original value Original units Original parameter Reference
mGlu4 receptor/Metabotropic glutamate receptor 4 in Rat (target type: SINGLE PROTEIN) [ChEMBL: CHEMBL2787] [GtoPdb: 292] [UniProtKB: P31423]
ChEMBL Pharmacological Assay: Metabotropic glutamate receptors were transiently transfected in HEK293 cells by electroporation as described elsewhere (Brabet I. et al., 1998) and plated in 96-well microplates. The high affinity glutamate transporter EAAC1 was co-transfected with the receptor in order to avoid any influence of glutamate released by the cells in the assay medium. In the experiments carried out by the inventors, Group-III mGluRs were co-transfected with a chimeric G-protein which couples the activation of the receptor to the phospholipase-C (PLC) pathway. Thus receptor activation induces production of inositol phosphate (IP) which in turn induces intracellular Ca2+ release. Receptor activity was then determined by measurement of the IP production or Ca release as already described (Goudet C. et al., PNAS 2004). For intracellular calcium measurements, cells expressing mGluRs were loaded with Ca2+-sensitive fluorescent dye Fluo-4 AM (Invitrogen, Cergy-Pontoise, France) dissolved in Hanks' balanced Salt Solution. F 6.89 pEC50 130 nM EC50 US-9212196-B2. Hypophosphorous acid derivatives having antihyperalgic activity and biological applications thereof (2015)
mGlu6 receptor/Metabotropic glutamate receptor 6 in Rat (target type: SINGLE PROTEIN) [ChEMBL: CHEMBL3842] [GtoPdb: 294] [UniProtKB: P35349]
ChEMBL Pharmacological Assay: Metabotropic glutamate receptors were transiently transfected in HEK293 cells by electroporation as described elsewhere (Brabet I. et al., 1998) and plated in 96-well microplates. The high affinity glutamate transporter EAAC1 was co-transfected with the receptor in order to avoid any influence of glutamate released by the cells in the assay medium. In the experiments carried out by the inventors, Group-III mGluRs were co-transfected with a chimeric G-protein which couples the activation of the receptor to the phospholipase-C (PLC) pathway. Thus receptor activation induces production of inositol phosphate (IP) which in turn induces intracellular Ca2+ release. Receptor activity was then determined by measurement of the IP production or Ca release as already described (Goudet C. et al., PNAS 2004). For intracellular calcium measurements, cells expressing mGluRs were loaded with Ca2+-sensitive fluorescent dye Fluo-4 AM (Invitrogen, Cergy-Pontoise, France) dissolved in Hanks' balanced Salt Solution. F 5.99 pEC50 1030 nM EC50 US-9212196-B2. Hypophosphorous acid derivatives having antihyperalgic activity and biological applications thereof (2015)
mGlu7 receptor/Metabotropic glutamate receptor 7 in Rat (target type: SINGLE PROTEIN) [ChEMBL: CHEMBL3879] [GtoPdb: 295] [UniProtKB: P35400]
ChEMBL Pharmacological Assay: Metabotropic glutamate receptors were transiently transfected in HEK293 cells by electroporation as described elsewhere (Brabet I. et al., 1998) and plated in 96-well microplates. The high affinity glutamate transporter EAAC1 was co-transfected with the receptor in order to avoid any influence of glutamate released by the cells in the assay medium. In the experiments carried out by the inventors, Group-III mGluRs were co-transfected with a chimeric G-protein which couples the activation of the receptor to the phospholipase-C (PLC) pathway. Thus receptor activation induces production of inositol phosphate (IP) which in turn induces intracellular Ca2+ release. Receptor activity was then determined by measurement of the IP production or Ca release as already described (Goudet C. et al., PNAS 2004). For intracellular calcium measurements, cells expressing mGluRs were loaded with Ca2+-sensitive fluorescent dye Fluo-4 AM (Invitrogen, Cergy-Pontoise, France) dissolved in Hanks' balanced Salt Solution. F 4 pEC50 >100000 nM EC50 US-9212196-B2. Hypophosphorous acid derivatives having antihyperalgic activity and biological applications thereof (2015)
mGlu8 receptor in Human [GtoPdb: 296] [UniProtKB: O00222]
GtoPdb - - 5.5 pEC50 - - - Brain Res Mol Brain Res (1998) 53: 88-97 [PMID:9473604]
mGlu8 receptor/Metabotropic glutamate receptor 8 in Rat (target type: SINGLE PROTEIN) [ChEMBL: CHEMBL2718] [GtoPdb: 296] [UniProtKB: P70579]
ChEMBL Pharmacological Assay: Metabotropic glutamate receptors were transiently transfected in HEK293 cells by electroporation as described elsewhere (Brabet I. et al., 1998) and plated in 96-well microplates. The high affinity glutamate transporter EAAC1 was co-transfected with the receptor in order to avoid any influence of glutamate released by the cells in the assay medium. In the experiments carried out by the inventors, Group-III mGluRs were co-transfected with a chimeric G-protein which couples the activation of the receptor to the phospholipase-C (PLC) pathway. Thus receptor activation induces production of inositol phosphate (IP) which in turn induces intracellular Ca2+ release. Receptor activity was then determined by measurement of the IP production or Ca release as already described (Goudet C. et al., PNAS 2004). For intracellular calcium measurements, cells expressing mGluRs were loaded with Ca2+-sensitive fluorescent dye Fluo-4 AM (Invitrogen, Cergy-Pontoise, France) dissolved in Hanks' balanced Salt Solution. F 6.54 pEC50 290 nM EC50 US-9212196-B2. Hypophosphorous acid derivatives having antihyperalgic activity and biological applications thereof (2015)

ChEMBL data shown on this page come from version 33:

Mendez D, Gaulton A, Bento AP, Chambers J, De Veij M, Félix E, Magariños MP, Mosquera JF, Mutowo P, Nowotka M, Gordillo-Marañón M, Hunter F, Junco L, Mugumbate G, Rodriguez-Lopez M, Atkinson F, Bosc N, Radoux CJ, Segura-Cabrera A, Hersey A, Leach AR. (2019) 'ChEMBL: towards direct deposition of bioassay data' Nucleic Acids Res., 47(D1). DOI: 10.1093/nar/gky1075. [EPMCID:30398643]
Davies M, Nowotka M, Papadatos G, Dedman N, Gaulton A, Atkinson F, Bellis L, Overington JP. (2015) 'ChEMBL web services: streamlining access to drug discovery data and utilities.' Nucleic Acids Res., 43(W1). DOI: 10.1093/nar/gkv352. [EPMCID:25883136]