Darnell et al., Molecular Cell Biology, Scientific American Books: New York, NY, pp. 233-235 (1986). |
European Search Report for application EP 93 81 0663 mailed Mar. 29, 1994. |
Flor et al., “Molecular Cloning, Functional Expression and Pharmacological Characterization of the Human Metabotropic Glutamate Receptor Type 2”, European J. of Neuroscience, 7:622-629 (1995). |
Flor et al., “Molecular Cloning Functional Expression and Pharmacological Characterization of Human Metabotropic Glutamate Receptor Type 4”, Neuropharmacology, 34(2): 149-155 (1995). |
Hollman et al., “Cloning by functional expression of a member of the glutamate receptor family”, Nature, 32:643-648 (1989). |
Honoré, T., “Excitatory Amino Acid Receptor Subtypes and Specific Antagonists”, Medicinal Research Reviews, 9(1):1-23 (1989). |
Knöpfel et al., “Metabotropic Glutamate Receptors: Novel Targets for Drug Development”, J. Medicinal Chemistry, 38(9): 1417-1436 (1995). |
Knöpfel et al., “Pharmacological Characterization of MCCG and MAP4 at the mGluR1b, MGluR2 and MGluR4A Human Metabotropic Glutamate Receptor Subtypes”, Neuropharmacology, 34(8):1099-1102 (1995). |
Knöpfel et al., “Profiling of trans-azetidine-2,4-dicarboxylic acid at the human metabotropic glutamate receptors mGlu1b, -2,-4a and -5a”, European J. Pharmacology, 288:389-392 (1995). |
Masu et al., “Sequence and expression of a metabotropic glutamate receptor”, Nature, 349: 760-765 (1991), |
Nakajima et al., “Direct Linkage of Three Tachykinin Receptors to Stimulation of Both Phosphatidylinositol Hydrolysis and Cyclic AMP Cascades in Transfected Chinese Hamster Ovary Cells”, J. of Biol. Chem., 267(4):2437-2442 (1992). |
Nakajima et al., “Molecular Characterization of a Novel Retinal Metabotropic Glutamate Receptor mGluR6 with a High Agonist Selectivity for L-2-Amino-4-phosphonobutyrate”, J. Biol. Chem., 268:11868-11873 (1993). |
Nakanishi, S., “Molecular Diversity of Glutamate Receptors and Implications for Brain Function”, Science, 258:597-603 (1992). |
Okamoto et al., “Molecular Characterization of a New Metabotropic Glutamate Receptor mGluR7 Coupled to Inhibitory Cyclic AMP Signal Transduction”, J. Biol. Chem., 269:1231-1236 (1994). |
Pin et al., “Alternative splicing generates metabotropic glutamate receptors inducing different patterns of calcium release in Xenopus oocytes”, Proc. Natl. Acad. Sci., 89:10331-10335 (1992). |
Pin et al., “Domains involved in the specificity of G protein activation in phospholipase C-coupled metabotropic glutamate receptors”, EMBO J., 13(2):342-348 (1994). |
Prickett et al., A Calcium-dependent Antibody of Identification and Purification of Recombianant Proteins, BioTechniques, 7(6):580-589. |
Probst et al., Sequence alignment of the G-protein coupled receptor superfamily, DNA and Cell Biology, 11(1):1-20. |
Search Report for application No. GB 9416553.7 dated Nov. 28, 1994. |
Stratagene Catalogue, 1991, p. 66. |
Sugiyama et al., “A new type of glutamate receptor linked to inositol phospholipid metabolism”, Nature 325:531-533 (1987). |
Tanabe et al., “A Family of Metabotropic Glutamate Receptors”, Neuron 8:169-179 (1992). |
Tanabe et al., “Signal Transduction, Pharmacological Properties, and Expression Patterns of Two Rat Metabotropic Glutamate Receptors, mGluR3 and MGluR4”, J. Neuroscience, 13(4):1372-1378 (1993). |
Tanabe, Y. et al., “A Family of metabotropic glutamate receptors—Rat metabotropic glutamate receptor 4 mRNA, primary transcript,”(Apr. 25, 1992); [XP002191416 Database EMBL Sequence Library], [accession No. M92077]. |
Tanabe, Y. et al., “A family of metabotropic glutamate receptors—metabotropic glutamate receptor 4 precursor,” (Jul. 1, 1993); [XP002191417 Database Swiss-Prot Database], [Accession No. P31423]. |
Partial EPO Search Report. |