Page last updated: 2024-09-03

gamma-glutamylaminomethylsulfonic acid and quisqualic acid

gamma-glutamylaminomethylsulfonic acid has been researched along with quisqualic acid in 11 studies

Compound Research Comparison

Studies
(gamma-glutamylaminomethylsulfonic acid)
Trials
(gamma-glutamylaminomethylsulfonic acid)
Recent Studies (post-2010)
(gamma-glutamylaminomethylsulfonic acid)
Studies
(quisqualic acid)
Trials
(quisqualic acid)
Recent Studies (post-2010) (quisqualic acid)
52021,362036

Protein Interaction Comparison

ProteinTaxonomygamma-glutamylaminomethylsulfonic acid (IC50)quisqualic acid (IC50)
Chain A, Glutamate Receptor 2Rattus norvegicus (Norway rat)0.02
Chain A, Glutamate Receptor 2Rattus norvegicus (Norway rat)0.02
Glutamate receptor 1Rattus norvegicus (Norway rat)5.1
Glutamate receptor 2Rattus norvegicus (Norway rat)5.1
Glutamate receptor 3Rattus norvegicus (Norway rat)5.1
Glutamate receptor 4Rattus norvegicus (Norway rat)5.1
Glutamate receptor ionotropic, kainate 1Rattus norvegicus (Norway rat)0.15
Glutamate receptor 1Mus musculus (house mouse)0.08
Glutamate receptor 2Mus musculus (house mouse)0.08
Glutamate receptor ionotropic, kainate 2Rattus norvegicus (Norway rat)0.15
Glutamate receptor ionotropic, kainate 3Rattus norvegicus (Norway rat)0.15
Glutamate receptor ionotropic, kainate 4Rattus norvegicus (Norway rat)0.15
Glutamate carboxypeptidase 2Homo sapiens (human)9.5
Glutamate receptor ionotropic, kainate 5Rattus norvegicus (Norway rat)0.15
Cystine/glutamate transporterHomo sapiens (human)5
Glutamate receptor 4Mus musculus (house mouse)0.08
Glutamate receptor 3Mus musculus (house mouse)0.08

Research

Studies (11)

TimeframeStudies, this research(%)All Research%
pre-19904 (36.36)18.7374
1990's6 (54.55)18.2507
2000's1 (9.09)29.6817
2010's0 (0.00)24.3611
2020's0 (0.00)2.80

Authors

AuthorsStudies
Bellows, DS; Clarke, ID; Diamandis, P; Dirks, PB; Graham, J; Jamieson, LG; Ling, EK; Sacher, AG; Tyers, M; Ward, RJ; Wildenhain, J1
Di Loreto, S; Florio, T; Scarnati, E1
Raigorodsky, G; Urca, G2
Urca, G; Urca, R1
Krebs, JC; Wirtshafter, D1
Balázs, R; Hack, N; Jørgensen, OS1
Dye, J; Heiligenberg, W; Kawasaki, M; Keller, CH1
Shreve, PE; Uretsky, NJ1
Boldry, R; Lee, T; Stephens, RL; Uretsky, NJ1
Stephens, DN; Turski, L1

Other Studies

11 other study(ies) available for gamma-glutamylaminomethylsulfonic acid and quisqualic acid

ArticleYear
Chemical genetics reveals a complex functional ground state of neural stem cells.
    Nature chemical biology, 2007, Volume: 3, Issue:5

    Topics: Animals; Cell Survival; Cells, Cultured; Mice; Molecular Structure; Neoplasms; Neurons; Pharmaceutical Preparations; Sensitivity and Specificity; Stem Cells

2007
Evidence that non-NMDA receptors are involved in the excitatory pathway from the pedunculopontine region to nigrostriatal dopaminergic neurons.
    Experimental brain research, 1992, Volume: 89, Issue:1

    Topics: 2-Amino-5-phosphonovalerate; 2-Aminoadipic Acid; 6-Cyano-7-nitroquinoxaline-2,3-dione; Animals; Corpus Striatum; Dopamine; Electric Stimulation; Evoked Potentials; Glutamine; Iontophoresis; Kainic Acid; Kynurenic Acid; Male; N-Methylaspartate; Neurons; Pons; Quinoxalines; Quisqualic Acid; Rats; Rats, Inbred Strains; Receptors, N-Methyl-D-Aspartate; Substantia Nigra; Synapses

1992
Spinal antinociceptive effects of excitatory amino acid antagonists: quisqualate modulates the action of N-methyl-D-aspartate.
    European journal of pharmacology, 1990, Jun-21, Volume: 182, Issue:1

    Topics: 2-Amino-5-phosphonovalerate; Amino Acids; Analgesics; Animals; Aspartic Acid; Dipeptides; Electric Stimulation; Glutamine; Kynurenic Acid; Male; Mice; Motor Activity; N-Methylaspartate; Oxadiazoles; Quisqualic Acid; Receptors, N-Methyl-D-Aspartate; Receptors, Neurotransmitter; Spinal Cord; Vocalization, Animal

1990
Neurotoxic effects of excitatory amino acids in the mouse spinal cord: quisqualate and kainate but not N-methyl-D-aspartate induce permanent neural damage.
    Brain research, 1990, Oct-08, Volume: 529, Issue:1-2

    Topics: 2-Amino-5-phosphonovalerate; Aggression; Animals; Glutamine; Kainic Acid; Male; Mice; Mice, Inbred ICR; Motor Activity; N-Methylaspartate; Neurons; Neurotoxins; Pain; Paralysis; Quisqualic Acid; Spinal Cord

1990
Control of food intake by kainate/quisqualate receptors in the median raphe nucleus.
    Psychopharmacology, 1990, Volume: 101, Issue:1

    Topics: Animals; Drinking; Eating; Glutamine; Injections; Kainic Acid; Male; Norleucine; Oxadiazoles; Piperazines; Quisqualic Acid; Raphe Nuclei; Rats; Rats, Inbred Strains; Receptors, AMPA; Receptors, Kainic Acid; Receptors, N-Methyl-D-Aspartate; Receptors, Neurotransmitter

1990
Selective stimulation of excitatory amino acid receptor subtypes and the survival of cerebellar granule cells in culture: effect of kainic acid.
    Neuroscience, 1990, Volume: 37, Issue:1

    Topics: alpha-Amino-3-hydroxy-5-methyl-4-isoxazolepropionic Acid; Animals; Cell Survival; Cells, Cultured; Cerebellum; Dipeptides; Dizocilpine Maleate; DNA; Electric Stimulation; Glutamine; Ibotenic Acid; Kainic Acid; L-Lactate Dehydrogenase; N-Methylaspartate; Potassium; Quinoxalines; Quisqualic Acid; Rats; Rats, Inbred Strains; Receptors, Amino Acid; Receptors, Cell Surface

1990
Different classes of glutamate receptors mediate distinct behaviors in a single brainstem nucleus.
    Proceedings of the National Academy of Sciences of the United States of America, 1989, Volume: 86, Issue:22

    Topics: 2-Amino-5-phosphonovalerate; Animals; Anticonvulsants; Aspartic Acid; Avoidance Learning; Brain Stem; Electric Fish; Electric Organ; Glutamates; Glutamic Acid; Glutamine; Kainic Acid; N-Methylaspartate; Oxadiazoles; Pipecolic Acids; Quisqualic Acid; Receptors, Glutamate; Receptors, Neurotransmitter

1989
Role of quisqualic acid receptors in the hypermotility response produced by the injection of AMPA into the nucleus accumbens.
    Pharmacology, biochemistry, and behavior, 1988, Volume: 30, Issue:2

    Topics: 2-Aminoadipic Acid; alpha-Amino-3-hydroxy-5-methyl-4-isoxazolepropionic Acid; Animals; Aspartic Acid; Glutamates; Glutamine; Ibotenic Acid; Injections; Kainic Acid; Locomotion; Male; N-Methylaspartate; Nucleus Accumbens; Oxadiazoles; Oxazoles; Quisqualic Acid; Rats; Rats, Inbred Strains; Receptors, AMPA; Receptors, Drug

1988
Behavioral classification of excitatory amino acid receptors in mouse spinal cord.
    European journal of pharmacology, 1988, Aug-24, Volume: 153, Issue:2-3

    Topics: 2-Amino-5-phosphonovalerate; Animals; Aspartic Acid; Behavior, Animal; Glutamates; Glutamic Acid; Glutamine; Kainic Acid; Male; Mice; Mice, Inbred ICR; N-Methylaspartate; Oxadiazoles; Quisqualic Acid; Receptors, Amino Acid; Receptors, Cell Surface; Spinal Cord; Valine

1988
Activation of excitatory amino acid receptors may mediate the folate-induced stimulation of locomotor activity after bilateral injection into the rat nucleus accumbens.
    The Journal of pharmacology and experimental therapeutics, 1986, Volume: 239, Issue:3

    Topics: 2-Aminoadipic Acid; Acetylcholine; Animals; Corpus Striatum; Diaminopimelic Acid; Folic Acid; Formyltetrahydrofolates; Glutamates; Glutamine; Kainic Acid; Male; Mathematics; Mice; Motor Activity; Nucleus Accumbens; Oxadiazoles; Pterins; Quisqualic Acid; Rats; Rats, Inbred Strains; Receptors, Amino Acid; Receptors, Cell Surface; Receptors, N-Methyl-D-Aspartate; Receptors, Neurotransmitter; Septal Nuclei; Taurine

1986
Kindling to the benzodiazepine receptor inverse agonist, FG 7142: evidence for involvement of NMDA, but not non-NMDA, glutamatergic receptors.
    Neuropharmacology, 1993, Volume: 32, Issue:10

    Topics: Animals; Carbolines; Female; Glutamine; Injections, Intraventricular; Kainic Acid; Kindling, Neurologic; Mice; Quisqualic Acid; Receptors, GABA-A; Receptors, Glutamate; Receptors, N-Methyl-D-Aspartate; Stereotaxic Techniques

1993