GRIK1 and GRIP1 |
glutamate receptor, ionotropic, kainate 1 |
glutamate receptor interacting protein 1 |
- Activation of Kainate Receptors upon glutamate binding
- Activation of Ca-permeable Kainate Receptor
- Neurotransmitter Receptor Binding And Downstream Transmission In The Postsynaptic Cell
- Activation of Na-permeable Kainate Receptors
- Ionotropic activity of Kainate Receptors
- Transmission across Chemical Synapses
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- Trafficking of GluR2-containing AMPA receptors
- Glutamate Binding, Activation of AMPA Receptors and Synaptic Plasticity
- Trafficking of AMPA receptors
- Neurotransmitter Receptor Binding And Downstream Transmission In The Postsynaptic Cell
- Transmission across Chemical Synapses
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- L-Glutamic Acid
- Topiramate
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GRIK1 and HOMER1 |
glutamate receptor, ionotropic, kainate 1 |
homer homolog 1 (Drosophila) |
- Activation of Kainate Receptors upon glutamate binding
- Activation of Ca-permeable Kainate Receptor
- Neurotransmitter Receptor Binding And Downstream Transmission In The Postsynaptic Cell
- Activation of Na-permeable Kainate Receptors
- Ionotropic activity of Kainate Receptors
- Transmission across Chemical Synapses
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- L-Glutamic Acid
- Topiramate
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GRIK1 and SDCBP |
glutamate receptor, ionotropic, kainate 1 |
syndecan binding protein (syntenin) |
- Activation of Kainate Receptors upon glutamate binding
- Activation of Ca-permeable Kainate Receptor
- Neurotransmitter Receptor Binding And Downstream Transmission In The Postsynaptic Cell
- Activation of Na-permeable Kainate Receptors
- Ionotropic activity of Kainate Receptors
- Transmission across Chemical Synapses
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- Ephrin signaling
- Axon guidance
- Neurofascin interactions
- EPH-Ephrin signaling
- L1CAM interactions
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- L-Glutamic Acid
- Topiramate
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GRIK1 and PICK1 |
glutamate receptor, ionotropic, kainate 1 |
protein interacting with PRKCA 1 |
- Activation of Kainate Receptors upon glutamate binding
- Activation of Ca-permeable Kainate Receptor
- Neurotransmitter Receptor Binding And Downstream Transmission In The Postsynaptic Cell
- Activation of Na-permeable Kainate Receptors
- Ionotropic activity of Kainate Receptors
- Transmission across Chemical Synapses
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- Trafficking of GluR2-containing AMPA receptors
- Glutamate Binding, Activation of AMPA Receptors and Synaptic Plasticity
- Trafficking of AMPA receptors
- Neurotransmitter Receptor Binding And Downstream Transmission In The Postsynaptic Cell
- Transmission across Chemical Synapses
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- L-Glutamic Acid
- Topiramate
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GRIK3 and GRIP1 |
glutamate receptor, ionotropic, kainate 3 |
glutamate receptor interacting protein 1 |
- Presynaptic function of Kainate receptors
- Activation of Kainate Receptors upon glutamate binding
- Activation of Ca-permeable Kainate Receptor
- Neurotransmitter Receptor Binding And Downstream Transmission In The Postsynaptic Cell
- Ionotropic activity of Kainate Receptors
- Transmission across Chemical Synapses
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- Trafficking of GluR2-containing AMPA receptors
- Glutamate Binding, Activation of AMPA Receptors and Synaptic Plasticity
- Trafficking of AMPA receptors
- Neurotransmitter Receptor Binding And Downstream Transmission In The Postsynaptic Cell
- Transmission across Chemical Synapses
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GRIK3 and SDCBP |
glutamate receptor, ionotropic, kainate 3 |
syndecan binding protein (syntenin) |
- Presynaptic function of Kainate receptors
- Activation of Kainate Receptors upon glutamate binding
- Activation of Ca-permeable Kainate Receptor
- Neurotransmitter Receptor Binding And Downstream Transmission In The Postsynaptic Cell
- Ionotropic activity of Kainate Receptors
- Transmission across Chemical Synapses
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- Ephrin signaling
- Axon guidance
- Neurofascin interactions
- EPH-Ephrin signaling
- L1CAM interactions
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GRIK3 and GRIK5 |
glutamate receptor, ionotropic, kainate 3 |
glutamate receptor, ionotropic, kainate 5 |
- Presynaptic function of Kainate receptors
- Activation of Kainate Receptors upon glutamate binding
- Activation of Ca-permeable Kainate Receptor
- Neurotransmitter Receptor Binding And Downstream Transmission In The Postsynaptic Cell
- Ionotropic activity of Kainate Receptors
- Transmission across Chemical Synapses
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- Activation of Kainate Receptors upon glutamate binding
- Activation of Ca-permeable Kainate Receptor
- Neurotransmitter Receptor Binding And Downstream Transmission In The Postsynaptic Cell
- Ionotropic activity of Kainate Receptors
- Transmission across Chemical Synapses
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GRIK3 and PICK1 |
glutamate receptor, ionotropic, kainate 3 |
protein interacting with PRKCA 1 |
- Presynaptic function of Kainate receptors
- Activation of Kainate Receptors upon glutamate binding
- Activation of Ca-permeable Kainate Receptor
- Neurotransmitter Receptor Binding And Downstream Transmission In The Postsynaptic Cell
- Ionotropic activity of Kainate Receptors
- Transmission across Chemical Synapses
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- Trafficking of GluR2-containing AMPA receptors
- Glutamate Binding, Activation of AMPA Receptors and Synaptic Plasticity
- Trafficking of AMPA receptors
- Neurotransmitter Receptor Binding And Downstream Transmission In The Postsynaptic Cell
- Transmission across Chemical Synapses
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GRIN1 and TRAF3 |
glutamate receptor, ionotropic, N-methyl D-aspartate 1 |
TNF receptor-associated factor 3 |
- EPHB-mediated forward signaling
- Axon guidance
- Activation of NMDA receptor upon glutamate binding and postsynaptic events
- CREB phosphorylation through the activation of CaMKII
- EPH-Ephrin signaling
- CREB phosphorylation through the activation of Ras
- Neurotransmitter Receptor Binding And Downstream Transmission In The Postsynaptic Cell
- Unblocking of NMDA receptor, glutamate binding and activation
- Ras activation uopn Ca2+ infux through NMDA receptor
- Post NMDA receptor activation events
- Transmission across Chemical Synapses
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- Activated TLR4 signalling
- RIG-I/MDA5 mediated induction of IFN-alpha/beta pathways
- TRAF3-dependent IRF activation pathway
- Toll-Like Receptors Cascades
- Negative regulators of RIG-I/MDA5 signaling
- TRIF-mediated TLR3/TLR4 signaling
- Toll Like Receptor 4 (TLR4) Cascade
- Toll Like Receptor 3 (TLR3) Cascade
- MyD88-independent cascade
- Innate Immune System
- Activation of IRF3/IRF7 mediated by TBK1/IKK epsilon
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- L-Glutamic Acid
- Meperidine
- Orphenadrine
- Dcka, 5,7-Dichlorokynurenic Acid
- D-Serine
- Cycloleucine
- Milnacipran
- Agmatine
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GRIN1 and GRIN2A |
glutamate receptor, ionotropic, N-methyl D-aspartate 1 |
glutamate receptor, ionotropic, N-methyl D-aspartate 2A |
- EPHB-mediated forward signaling
- Axon guidance
- Activation of NMDA receptor upon glutamate binding and postsynaptic events
- CREB phosphorylation through the activation of CaMKII
- EPH-Ephrin signaling
- CREB phosphorylation through the activation of Ras
- Neurotransmitter Receptor Binding And Downstream Transmission In The Postsynaptic Cell
- Unblocking of NMDA receptor, glutamate binding and activation
- Ras activation uopn Ca2+ infux through NMDA receptor
- Post NMDA receptor activation events
- Transmission across Chemical Synapses
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- Activation of NMDA receptor upon glutamate binding and postsynaptic events
- CREB phosphorylation through the activation of CaMKII
- CREB phosphorylation through the activation of Ras
- Neurotransmitter Receptor Binding And Downstream Transmission In The Postsynaptic Cell
- Unblocking of NMDA receptor, glutamate binding and activation
- Ras activation uopn Ca2+ infux through NMDA receptor
- Post NMDA receptor activation events
- Transmission across Chemical Synapses
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- L-Glutamic Acid
- Meperidine
- Orphenadrine
- Dcka, 5,7-Dichlorokynurenic Acid
- D-Serine
- Cycloleucine
- Milnacipran
- Agmatine
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- L-Glutamic Acid
- Glycine
- Meperidine
- Felbamate
- Memantine
- Halothane
- Tenocyclidine
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GRIN2A and PLCG1 |
glutamate receptor, ionotropic, N-methyl D-aspartate 2A |
phospholipase C, gamma 1 |
- Activation of NMDA receptor upon glutamate binding and postsynaptic events
- CREB phosphorylation through the activation of CaMKII
- CREB phosphorylation through the activation of Ras
- Neurotransmitter Receptor Binding And Downstream Transmission In The Postsynaptic Cell
- Unblocking of NMDA receptor, glutamate binding and activation
- Ras activation uopn Ca2+ infux through NMDA receptor
- Post NMDA receptor activation events
- Transmission across Chemical Synapses
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- Signaling by the B Cell Receptor (BCR)
- Phospholipase C-mediated cascade
- Signaling by FGFR in disease
- FCERI mediated MAPK activation
- Signaling by EGFRvIII in Cancer
- PLCG1 events in ERBB2 signaling
- DAP12 signaling
- Constitutive Signaling by Ligand-Responsive EGFR Cancer Variants
- Synthesis of IP3 and IP4 in the cytosol
- Signaling by FGFR1 mutants
- Role of phospholipids in phagocytosis
- Fcgamma receptor (FCGR) dependent phagocytosis
- Signaling by PDGF
- DAP12 interactions
- Inositol phosphate metabolism
- Antiviral mechanism by IFN-stimulated genes
- EGFR interacts with phospholipase C-gamma
- Signaling by ERBB2
- Signaling by EGFR
- TCR signaling
- Signaling by VEGF
- Downstream signal transduction
- Fc epsilon receptor (FCERI) signaling
- Signaling by EGFR in Cancer
- Signaling by FGFR mutants
- Frs2-mediated activation
- Adaptive Immune System
- Signalling to ERKs
- Prolonged ERK activation events
- Axon guidance
- DAG and IP3 signaling
- VEGFA-VEGFR2 Pathway
- VEGFR2 mediated cell proliferation
- Downstream signaling of activated FGFR
- Netrin-1 signaling
- Antigen activates B Cell Receptor (BCR) leading to generation of second messengers
- Innate Immune System
- Signalling by NGF
- Generation of second messenger molecules
- ISG15 antiviral mechanism
- Interferon Signaling
- Cytokine Signaling in Immune system
- Signaling by Ligand-Responsive EGFR Variants in Cancer
- NGF signalling via TRKA from the plasma membrane
- Signaling by Overexpressed Wild-Type EGFR in Cancer
- Signaling by FGFR
- PECAM1 interactions
- Cell surface interactions at the vascular wall
- Role of second messengers in netrin-1 signaling
- PLC-gamma1 signalling
- FCERI mediated Ca+2 mobilization
- Constitutive Signaling by EGFRvIII
- Signaling by FGFR1 fusion mutants
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- L-Glutamic Acid
- Glycine
- Meperidine
- Felbamate
- Memantine
- Halothane
- Tenocyclidine
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GRIN2A and GRIN3A |
glutamate receptor, ionotropic, N-methyl D-aspartate 2A |
glutamate receptor, ionotropic, N-methyl-D-aspartate 3A |
- Activation of NMDA receptor upon glutamate binding and postsynaptic events
- CREB phosphorylation through the activation of CaMKII
- CREB phosphorylation through the activation of Ras
- Neurotransmitter Receptor Binding And Downstream Transmission In The Postsynaptic Cell
- Unblocking of NMDA receptor, glutamate binding and activation
- Ras activation uopn Ca2+ infux through NMDA receptor
- Post NMDA receptor activation events
- Transmission across Chemical Synapses
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- L-Glutamic Acid
- Glycine
- Meperidine
- Felbamate
- Memantine
- Halothane
- Tenocyclidine
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- L-Glutamic Acid
- Tramadol
- Methadone
- Ethopropazine
- Dextromethorphan
- Acamprosate
- Procaine
- Ethanol
- Amantadine
- Felbamate
- Memantine
- Halothane
- Chloroprocaine
- Orphenadrine
- Ketamine
- Tenocyclidine
- Rolicyclidine
- Phencyclidine
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GRIN2A and PRKCA |
glutamate receptor, ionotropic, N-methyl D-aspartate 2A |
protein kinase C, alpha |
- Activation of NMDA receptor upon glutamate binding and postsynaptic events
- CREB phosphorylation through the activation of CaMKII
- CREB phosphorylation through the activation of Ras
- Neurotransmitter Receptor Binding And Downstream Transmission In The Postsynaptic Cell
- Unblocking of NMDA receptor, glutamate binding and activation
- Ras activation uopn Ca2+ infux through NMDA receptor
- Post NMDA receptor activation events
- Transmission across Chemical Synapses
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- Ca-dependent events
- Signaling by GPCR
- CaM pathway
- Signaling by FGFR in disease
- Phospholipase C-mediated cascade
- Integration of energy metabolism
- Mitotic Prophase
- Signaling by Wnt
- Signaling by EGFRvIII in Cancer
- PLCG1 events in ERBB2 signaling
- Signaling by SCF-KIT
- DAP12 signaling
- Regulation of KIT signaling
- Gastrin-CREB signalling pathway via PKC and MAPK
- Response to elevated platelet cytosolic Ca2+
- G alpha (z) signalling events
- Neurotransmitter Receptor Binding And Downstream Transmission In The Postsynaptic Cell
- Signaling by PDGF
- Calmodulin induced events
- DAP12 interactions
- Regulation of mRNA stability by proteins that bind AU-rich elements
- Opioid Signalling
- Diseases associated with visual transduction
- EGFR interacts with phospholipase C-gamma
- Signaling by ERBB2
- Signaling by EGFR
- Syndecan interactions
- GPCR downstream signaling
- Signaling by VEGF
- Calmodulin induced events
- Downstream signal transduction
- WNT5A-dependent internalization of FZD4
- Signaling by EGFR in Cancer
- Platelet activation, signaling and aggregation
- PCP/CE pathway
- Transmission across Chemical Synapses
- Trafficking of GluR2-containing AMPA receptors
- Nuclear Envelope Breakdown
- HuR stabilizes mRNA
- DAG and IP3 signaling
- M Phase
- VEGFA-VEGFR2 Pathway
- CaM pathway
- Inactivation, recovery and regulation of the phototransduction cascade
- EGFR Transactivation by Gastrin
- VEGFR2 mediated cell proliferation
- Downstream signaling of activated FGFR
- The phototransduction cascade
- Disinhibition of SNARE formation
- Innate Immune System
- Signalling by NGF
- PLC beta mediated events
- Regulation of insulin secretion
- Depolymerisation of the Nuclear Lamina
- Signaling by Ligand-Responsive EGFR Variants in Cancer
- NGF signalling via TRKA from the plasma membrane
- G-protein mediated events
- Non-integrin membrane-ECM interactions
- Signaling by Overexpressed Wild-Type EGFR in Cancer
- Trafficking of AMPA receptors
- Cell Cycle, Mitotic
- Signaling by FGFR
- beta-catenin independent WNT signaling
- Acetylcholine regulates insulin secretion
- Visual phototransduction
- Ca2+ pathway
- PLC-gamma1 signalling
- Glutamate Binding, Activation of AMPA Receptors and Synaptic Plasticity
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- L-Glutamic Acid
- Glycine
- Meperidine
- Felbamate
- Memantine
- Halothane
- Tenocyclidine
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- Phosphatidylserine
- Vitamin E
- Ingenol Mebutate
- Ellagic Acid
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GRIN2A and AP1M1 |
glutamate receptor, ionotropic, N-methyl D-aspartate 2A |
adaptor-related protein complex 1, mu 1 subunit |
- Activation of NMDA receptor upon glutamate binding and postsynaptic events
- CREB phosphorylation through the activation of CaMKII
- CREB phosphorylation through the activation of Ras
- Neurotransmitter Receptor Binding And Downstream Transmission In The Postsynaptic Cell
- Unblocking of NMDA receptor, glutamate binding and activation
- Ras activation uopn Ca2+ infux through NMDA receptor
- Post NMDA receptor activation events
- Transmission across Chemical Synapses
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- Nef-mediates down modulation of cell surface receptors by recruiting them to clathrin adapters
- HIV Infection
- Host Interactions of HIV factors
- Golgi Associated Vesicle Biogenesis
- The role of Nef in HIV-1 replication and disease pathogenesis
- Nef mediated downregulation of MHC class I complex cell surface expression
- Clathrin derived vesicle budding
- Lysosome Vesicle Biogenesis
- MHC class II antigen presentation
- trans-Golgi Network Vesicle Budding
- Adaptive Immune System
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- L-Glutamic Acid
- Glycine
- Meperidine
- Felbamate
- Memantine
- Halothane
- Tenocyclidine
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GRIN2A and DLGAP1 |
glutamate receptor, ionotropic, N-methyl D-aspartate 2A |
discs, large (Drosophila) homolog-associated protein 1 |
- Activation of NMDA receptor upon glutamate binding and postsynaptic events
- CREB phosphorylation through the activation of CaMKII
- CREB phosphorylation through the activation of Ras
- Neurotransmitter Receptor Binding And Downstream Transmission In The Postsynaptic Cell
- Unblocking of NMDA receptor, glutamate binding and activation
- Ras activation uopn Ca2+ infux through NMDA receptor
- Post NMDA receptor activation events
- Transmission across Chemical Synapses
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- L-Glutamic Acid
- Glycine
- Meperidine
- Felbamate
- Memantine
- Halothane
- Tenocyclidine
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GRIN2A and RGS3 |
glutamate receptor, ionotropic, N-methyl D-aspartate 2A |
regulator of G-protein signaling 3 |
- Activation of NMDA receptor upon glutamate binding and postsynaptic events
- CREB phosphorylation through the activation of CaMKII
- CREB phosphorylation through the activation of Ras
- Neurotransmitter Receptor Binding And Downstream Transmission In The Postsynaptic Cell
- Unblocking of NMDA receptor, glutamate binding and activation
- Ras activation uopn Ca2+ infux through NMDA receptor
- Post NMDA receptor activation events
- Transmission across Chemical Synapses
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- L-Glutamic Acid
- Glycine
- Meperidine
- Felbamate
- Memantine
- Halothane
- Tenocyclidine
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GRIN2A and PTPN4 |
glutamate receptor, ionotropic, N-methyl D-aspartate 2A |
protein tyrosine phosphatase, non-receptor type 4 (megakaryocyte) |
- Activation of NMDA receptor upon glutamate binding and postsynaptic events
- CREB phosphorylation through the activation of CaMKII
- CREB phosphorylation through the activation of Ras
- Neurotransmitter Receptor Binding And Downstream Transmission In The Postsynaptic Cell
- Unblocking of NMDA receptor, glutamate binding and activation
- Ras activation uopn Ca2+ infux through NMDA receptor
- Post NMDA receptor activation events
- Transmission across Chemical Synapses
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- L-Glutamic Acid
- Glycine
- Meperidine
- Felbamate
- Memantine
- Halothane
- Tenocyclidine
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GRIN2A and IL16 |
glutamate receptor, ionotropic, N-methyl D-aspartate 2A |
interleukin 16 |
- Activation of NMDA receptor upon glutamate binding and postsynaptic events
- CREB phosphorylation through the activation of CaMKII
- CREB phosphorylation through the activation of Ras
- Neurotransmitter Receptor Binding And Downstream Transmission In The Postsynaptic Cell
- Unblocking of NMDA receptor, glutamate binding and activation
- Ras activation uopn Ca2+ infux through NMDA receptor
- Post NMDA receptor activation events
- Transmission across Chemical Synapses
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- L-Glutamic Acid
- Glycine
- Meperidine
- Felbamate
- Memantine
- Halothane
- Tenocyclidine
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GRIN2A and SPTAN1 |
glutamate receptor, ionotropic, N-methyl D-aspartate 2A |
spectrin, alpha, non-erythrocytic 1 |
- Activation of NMDA receptor upon glutamate binding and postsynaptic events
- CREB phosphorylation through the activation of CaMKII
- CREB phosphorylation through the activation of Ras
- Neurotransmitter Receptor Binding And Downstream Transmission In The Postsynaptic Cell
- Unblocking of NMDA receptor, glutamate binding and activation
- Ras activation uopn Ca2+ infux through NMDA receptor
- Post NMDA receptor activation events
- Transmission across Chemical Synapses
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- Interaction between L1 and Ankyrins
- Apoptotic cleavage of cellular proteins
- Axon guidance
- Programmed Cell Death
- Apoptotic execution phase
- Nephrin interactions
- L1CAM interactions
- Caspase-mediated cleavage of cytoskeletal proteins
- NCAM signaling for neurite out-growth
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- L-Glutamic Acid
- Glycine
- Meperidine
- Felbamate
- Memantine
- Halothane
- Tenocyclidine
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GRIN2A and ARHGAP32 |
glutamate receptor, ionotropic, N-methyl D-aspartate 2A |
Rho GTPase activating protein 32 |
- Activation of NMDA receptor upon glutamate binding and postsynaptic events
- CREB phosphorylation through the activation of CaMKII
- CREB phosphorylation through the activation of Ras
- Neurotransmitter Receptor Binding And Downstream Transmission In The Postsynaptic Cell
- Unblocking of NMDA receptor, glutamate binding and activation
- Ras activation uopn Ca2+ infux through NMDA receptor
- Post NMDA receptor activation events
- Transmission across Chemical Synapses
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- Rho GTPase cycle
- Signaling by Rho GTPases
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- L-Glutamic Acid
- Glycine
- Meperidine
- Felbamate
- Memantine
- Halothane
- Tenocyclidine
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