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Ionotropic glutamate receptor

Ionotropic glutamate receptors (iGluRs) are ligand-gated ion channels that are activated by the neurotransmitter glutamate.[1] They mediate the majority of excitatory synaptic transmission throughout the central nervous system and are key players in synaptic plasticity, which is important for learning and memory. iGluRs have been divided into four subtypes on the basis of their ligand binding properties (pharmacology) and sequence similarity: AMPA receptors, kainate receptors, NMDA receptors and delta receptors (see below).[2]

Lig_chan
x-ray structure of the glur6 ligand binding core (s1s2a) in complex with glutamate at 1.65 a resolution
Identifiers
SymbolLig_chan
PfamPF00060
Pfam clanCL0030
InterProIPR001320
SCOP21gr2 / SCOPe / SUPFAM
TCDB1.A.10
OPM superfamily8
OPM protein3kg2
Available protein structures:
Pfam  structures / ECOD  
PDBRCSB PDB; PDBe; PDBj
PDBsumstructure summary

AMPA receptors are the main charge carriers during basal transmission, permitting influx of sodium ions to depolarise the postsynaptic membrane. NMDA receptors are blocked by magnesium ions and therefore only permit ion flux following prior depolarisation. This enables them to act as coincidence detectors for synaptic plasticity. Calcium influx through NMDA receptors leads to persistent modifications in the strength of synaptic transmission.[3][4]

iGluRs are tetramers (they are formed of four subunits). All subunits have a shared architecture with four domain layers: two extracellular clamshell domains called the N-terminal domain (NTD) and ligand-binding domain (LBD; which binds glutamate), the transmembrane domain (TMD) that forms the ion channel, and an intracellular C-terminal domain (CTD).[5]

Human proteins/genes encoding iGluR subunits edit

AMPA receptors: GluA1/GRIA1; GluA2/GRIA2; GluA3/GRIA3; GluA4/GRIA4;

delta receptors: GluD1/GRID1; GluD2/GRID2;

kainate receptors: GluK1/GRIK1; GluK2/GRIK2; GluK3/GRIK3; GluK4/GRIK4; GluK5/GRIK5;

NMDA receptors: GluN1/GRIN1; GluN2A/GRIN2A; GluN2B/GRIN2B; GluN2C/GRIN2C; GluN2D/GRIN2D; GluN3A/GRIN3A; GluN3B/GRIN3B;

References edit

  1. ^ Traynelis SF, Wollmuth LP, McBain CJ, Menniti FS, Vance KM, Ogden KK, Hansen KB, Yuan H, Myers SJ, Dingledine R (September 2010). "Glutamate receptor ion channels: structure, regulation, and function". Pharmacol. Rev. 62 (3): 405–496. doi:10.1124/pr.109.002451. PMC 2964903. PMID 20716669.
  2. ^ Collingridge GL, Olsen RW, Peters J, Spedding M (January 2009). "A nomenclature for ligand-gated ion channels". Neuropharmacology. 56 (1): 2–5. doi:10.1016/j.neuropharm.2008.06.063. PMC 2847504. PMID 18655795.
  3. ^ Bliss TV, Collingridge GL (January 1993). "A synaptic model of memory: long-term potentiation in the hippocampus". Nature. 361 (6407): 31–39. Bibcode:1993Natur.361...31B. doi:10.1038/361031a0. PMID 8421494. S2CID 4326182.
  4. ^ Citri A, Malenka RC (January 2008). "Synaptic plasticity: multiple forms, functions, and mechanisms". Neuropsychopharmacology. 33 (1): 18–41. doi:10.1038/sj.npp.1301559. PMID 17728696.
  5. ^ Traynelis SF, Wollmuth LP, McBain CJ, Menniti FS, Vance KM, Ogden KK, Hansen KB, Yuan H, Myers SJ, Dingledine R (September 2010). "Glutamate receptor ion channels: structure, regulation, and function". Pharmacol. Rev. 62 (3): 405–496. doi:10.1124/pr.109.002451. PMC 2964903. PMID 20716669.
This article incorporates text from the public domain Pfam and InterPro: IPR001320


ionotropic, glutamate, receptor, iglurs, ligand, gated, channels, that, activated, neurotransmitter, glutamate, they, mediate, majority, excitatory, synaptic, transmission, throughout, central, nervous, system, players, synaptic, plasticity, which, important, . Ionotropic glutamate receptors iGluRs are ligand gated ion channels that are activated by the neurotransmitter glutamate 1 They mediate the majority of excitatory synaptic transmission throughout the central nervous system and are key players in synaptic plasticity which is important for learning and memory iGluRs have been divided into four subtypes on the basis of their ligand binding properties pharmacology and sequence similarity AMPA receptors kainate receptors NMDA receptors and delta receptors see below 2 Lig chanx ray structure of the glur6 ligand binding core s1s2a in complex with glutamate at 1 65 a resolutionIdentifiersSymbolLig chanPfamPF00060Pfam clanCL0030InterProIPR001320SCOP21gr2 SCOPe SUPFAMTCDB1 A 10OPM superfamily8OPM protein3kg2Available protein structures Pfam structures ECOD PDBRCSB PDB PDBe PDBjPDBsumstructure summary AMPA receptors are the main charge carriers during basal transmission permitting influx of sodium ions to depolarise the postsynaptic membrane NMDA receptors are blocked by magnesium ions and therefore only permit ion flux following prior depolarisation This enables them to act as coincidence detectors for synaptic plasticity Calcium influx through NMDA receptors leads to persistent modifications in the strength of synaptic transmission 3 4 iGluRs are tetramers they are formed of four subunits All subunits have a shared architecture with four domain layers two extracellular clamshell domains called the N terminal domain NTD and ligand binding domain LBD which binds glutamate the transmembrane domain TMD that forms the ion channel and an intracellular C terminal domain CTD 5 Human proteins genes encoding iGluR subunits editAMPA receptors GluA1 GRIA1 GluA2 GRIA2 GluA3 GRIA3 GluA4 GRIA4 delta receptors GluD1 GRID1 GluD2 GRID2 kainate receptors GluK1 GRIK1 GluK2 GRIK2 GluK3 GRIK3 GluK4 GRIK4 GluK5 GRIK5 NMDA receptors GluN1 GRIN1 GluN2A GRIN2A GluN2B GRIN2B GluN2C GRIN2C GluN2D GRIN2D GluN3A GRIN3A GluN3B GRIN3B References edit Traynelis SF Wollmuth LP McBain CJ Menniti FS Vance KM Ogden KK Hansen KB Yuan H Myers SJ Dingledine R September 2010 Glutamate receptor ion channels structure regulation and function Pharmacol Rev 62 3 405 496 doi 10 1124 pr 109 002451 PMC 2964903 PMID 20716669 Collingridge GL Olsen RW Peters J Spedding M January 2009 A nomenclature for ligand gated ion channels Neuropharmacology 56 1 2 5 doi 10 1016 j neuropharm 2008 06 063 PMC 2847504 PMID 18655795 Bliss TV Collingridge GL January 1993 A synaptic model of memory long term potentiation in the hippocampus Nature 361 6407 31 39 Bibcode 1993Natur 361 31B doi 10 1038 361031a0 PMID 8421494 S2CID 4326182 Citri A Malenka RC January 2008 Synaptic plasticity multiple forms functions and mechanisms Neuropsychopharmacology 33 1 18 41 doi 10 1038 sj npp 1301559 PMID 17728696 Traynelis SF Wollmuth LP McBain CJ Menniti FS Vance KM Ogden KK Hansen KB Yuan H Myers SJ Dingledine R September 2010 Glutamate receptor ion channels structure regulation and function Pharmacol Rev 62 3 405 496 doi 10 1124 pr 109 002451 PMC 2964903 PMID 20716669 This article incorporates text from the public domain Pfam and InterPro IPR001320 nbsp This membrane protein related article is a stub You can help Wikipedia by expanding it vte Retrieved from https en wikipedia org w index php title Ionotropic glutamate receptor amp oldid 1180217858, wikipedia, wiki, book, books, library,

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