KEGG   PATHWAY: mdo04742
Entry
mdo04742                    Pathway                                
Name
Taste transduction - Monodelphis domestica (gray short-tailed opossum)
Description
Five basic tastes are recognized by humans and most other animals - bitter, sweet, sour, salty and umami. In vertebrates, taste stimuli are detected by taste receptor cells (TRCs). At least three distinct cell types are found in mammalian taste buds : type I cells, type II cells, and type III cells. Type I cells express epithelial sodium channel (ENaC) and are considered to be the major mediator of perception of low salt. In type II cells, transduction of bitter, sweet and umami is mediated by a canonical PLC-beta/IP3-signaling cascade, which culminates in the opening of the TRPM5 ion channel. This produces a depolarization that may allow CALMH1 channels to open and release ATP, which serves as a neurotransmitter to activate closely associated nerve afferents expressing P2X2, P2X3 receptors and adjacent type III cells expressing P2Y4 receptors. Type II taste cells also secrete acetylcholine (ACh) that appears to stimulate muscarinic receptors, specifically M3, on the same or neighboring Type II cells. This muscarinic feedback augments taste-evoked release of ATP. In type III cells, sour taste is initiated when protons enter through apically located proton-selective ion channels: polycystic kidney disease 2-like 1 protein (PKD2L1) and polycystic kidney disease 1-like 3 protein (PKD1L3) channels. Weak acids may also activate sour cells by penetrating the cell membrane and leading to closure of resting K+ channels and membrane depolarization. Further, voltage-gated Ca2+ channels are activated and release vesicular serotonin (5-HT), norepinephrine (NE) and gamma-aminobutyric acid (GABA). 5-HT and GABA provide negative paracrine feedback onto receptor cells by activating 5-HT1A and GABAA, GABAB receptors, respectively. 5-HT also functions as a transmitter between presynaptic cells and the sensory afferent.
Class
Organismal Systems; Sensory system
Pathway map
mdo04742  Taste transduction
mdo04742

Other DBs
GO: 0050909
Organism
Monodelphis domestica (gray short-tailed opossum) [GN:mdo]
Gene
100014763  SCNN1A; sodium channel epithelial 1 alpha subunit [KO:K04824]
100027536  SCNN1B; sodium channel epithelial 1 beta subunit [KO:K04825]
100019886  SCNN1G; sodium channel epithelial 1 gamma subunit [KO:K04827]
100022598  ENTPD2; ectonucleoside triphosphate diphosphohydrolase 2 [KO:K01509] [EC:3.6.1.-]
100619414  TAS1R2; taste 1 receptor member 2 [KO:K04625]
103094777  TAS1R3; taste 1 receptor member 3 [KO:K04626]
100012963  GNAT3; G protein subunit alpha transducin 3 [KO:K19729]
100013759  GNB3; G protein subunit beta 3 [KO:K07825]
100017439  GNG13; G protein subunit gamma 13 [KO:K04547]
100030872  ADCY4; adenylate cyclase 4 [KO:K08044] [EC:4.6.1.1]
100026554  ADCY8; adenylate cyclase 8 [KO:K08048] [EC:4.6.1.1]
100011211  PRKACB; protein kinase cAMP-activated catalytic subunit beta [KO:K04345] [EC:2.7.11.11]
100026861  PRKACA; protein kinase cAMP-activated catalytic subunit alpha [KO:K04345] [EC:2.7.11.11]
100032298  cAMP-dependent protein kinase catalytic subunit alpha [KO:K04345] [EC:2.7.11.11]
100033281  PLCB4; phospholipase C beta 4 [KO:K05858] [EC:3.1.4.11]
100031660  PLCB1; phospholipase C beta 1 [KO:K05858] [EC:3.1.4.11]
100031869  PLCB2; phospholipase C beta 2 [KO:K05858] [EC:3.1.4.11]
100031263  PLCB3; phospholipase C beta 3 [KO:K05858] [EC:3.1.4.11]
100025596  ITPR3; inositol 1,4,5-trisphosphate receptor type 3 [KO:K04960]
100016409  SCN2A; sodium voltage-gated channel alpha subunit 2 [KO:K04834]
100016369  SCN3A; sodium voltage-gated channel alpha subunit 3 [KO:K04836]
100016648  SCN9A; sodium channel protein type 9 subunit alpha [KO:K04841]
100023419  sodium channel protein type 9 subunit alpha-like [KO:K04841]
100023497  sodium channel protein type 9 subunit alpha-like [KO:K04841]
100028562  CALHM1; calcium homeostasis modulator 1 [KO:K19738]
100027526  P2RX2; purinergic receptor P2X 2 [KO:K05216]
100022565  P2RX3; purinergic receptor P2X 3 [KO:K05217]
100020509  P2RY1; purinergic receptor P2Y1 [KO:K04270]
100011857  P2RY4; pyrimidinergic receptor P2Y4 [KO:K04271]
100027809  CHRM3; cholinergic receptor muscarinic 3 [KO:K04131]
100026826  TAS1R1; taste 1 receptor member 1 [KO:K04624]
100026724  GRM1; glutamate metabotropic receptor 1 [KO:K04603]
100027811  GRM4; glutamate metabotropic receptor 4 [KO:K04607]
664677  T2R41; bitter taste receptor Modo-T2R41 [KO:K08474]
664673  TAS2R1; taste 2 receptor member 1 [KO:K08474]
664658  T2R62; bitter taste receptor Modo-T2R62 [KO:K08474]
664672  T2R3A; bitter taste receptor Modo-T2R3A [KO:K08474]
664662  TAS2R60; taste 2 receptor member 60 [KO:K08474]
100025571  taste receptor type 2 member 7-like [KO:K08474]
664661  TAS2R4; taste 2 receptor member 4 [KO:K08474]
664681  T2R39; bitter taste receptor Modo-T2R39 [KO:K08474]
664679  T2R40; bitter taste receptor Modo-T2R40 [KO:K08474]
664680  TAS2R38; taste 2 receptor member 38 [KO:K08474]
664669  T2R7A; bitter taste receptor Modo-T2R7A [KO:K08474]
664670  T2R22; bitter taste receptor Modo-T2R22 [KO:K08474]
664664  T2R25; bitter taste receptor Modo-T2R25 [KO:K08474]
664682  T2R23; bitter taste receptor Modo-T2R23 [KO:K08474]
664660  T2R2; bitter taste receptor Modo-T2R2 [KO:K08474]
664675  T2R27; bitter taste receptor Modo-T2R27 [KO:K08474]
664674  T2R3J; bitter taste receptor Modo-T2R3J [KO:K08474]
664657  T2R26; bitter taste receptor Modo-T2R26 [KO:K08474]
664659  T2R21; bitter taste receptor Modo-T2R21 [KO:K08474]
664665  T2R3D; bitter taste receptor Modo-T2R3D [KO:K08474]
664667  MODO-T2R28; bitter taste receptor Modo-T2R28 [KO:K08474]
664668  T2R24; bitter taste receptor Modo-T2R24 [KO:K08474]
100019547  taste receptor type 2 member 7-like [KO:K08474]
107651144  taste receptor type 2 member 9-like [KO:K08474]
100024356  bitter taste receptor [KO:K08474]
664663  T2R3H; bitter taste receptor Modo-T2R3H [KO:K08474]
664671  T2R29; bitter taste receptor Modo-T2R29 [KO:K08474]
664676  T2R7B; bitter taste receptor Modo-T2R7B [KO:K08474]
664678  T2R3F; bitter taste receptor Modo-T2R3F [KO:K08474]
100024383  taste receptor type 2 member 3-like [KO:K08474]
100027573  PDE1A; phosphodiesterase 1A [KO:K13755] [EC:3.1.4.17]
100019026  PDE1C; calcium/calmodulin-dependent 3',5'-cyclic nucleotide phosphodiesterase 1C [KO:K13755] [EC:3.1.4.17]
100027906  PKD2L1; polycystin 2 like 1, transient receptor potential cation channel [KO:K04990]
100028718  PKD1L3; polycystin 1 like 3, transient receptor potential channel interacting [KO:K04989]
100026906  KCNK5; potassium two pore domain channel subfamily K member 5 [KO:K04916]
100029230  HCN4; hyperpolarization activated cyclic nucleotide gated potassium channel 4 [KO:K04957]
100021108  CACNA1A; calcium voltage-gated channel subunit alpha1 A [KO:K04344]
100021421  CACNA1C; calcium voltage-gated channel subunit alpha1 C [KO:K04850]
100030540  GABRA1; gamma-aminobutyric acid type A receptor alpha1 subunit [KO:K05175]
100019686  GABRA2; gamma-aminobutyric acid type A receptor alpha2 subunit [KO:K05175]
100026298  GABRA3; gamma-aminobutyric acid type A receptor alpha3 subunit [KO:K05175]
100019555  GABRA4; gamma-aminobutyric acid type A receptor alpha4 subunit [KO:K05175]
100011526  GABRA5; gamma-aminobutyric acid type A receptor alpha5 subunit [KO:K05175]
100030493  GABRA6; gamma-aminobutyric acid type A receptor alpha6 subunit [KO:K05175]
100023559  GABBR1; gamma-aminobutyric acid type B receptor subunit 1 [KO:K04615]
100019447  GABBR2; gamma-aminobutyric acid type B receptor subunit 2 [KO:K04615]
100032349  HTR1A; 5-hydroxytryptamine receptor 1A [KO:K04153]
100022515  HTR1B; 5-hydroxytryptamine receptor 1B [KO:K04153]
100024970  HTR1D; 5-hydroxytryptamine receptor 1D [KO:K04153]
100025139  HTR1E; 5-hydroxytryptamine receptor 1E [KO:K04153]
100030455  HTR1F; 5-hydroxytryptamine receptor 1F [KO:K04153]
100032167  HTR3B; 5-hydroxytryptamine receptor 3B [KO:K04819]
100022664  5-hydroxytryptamine receptor 3E-like [KO:K04819]
100022690  HTR3C; 5-hydroxytryptamine receptor 3C [KO:K04819]
100022714  5-hydroxytryptamine receptor 3C-like [KO:K04819]
100032164  HTR3A; 5-hydroxytryptamine receptor 3A [KO:K04819]
100022516  ASIC2; acid sensing ion channel subunit 2 [KO:K04828]
Compound
C00002  ATP
C00008  ADP
C00020  AMP
C00025  L-Glutamate
C00031  D-Glucose
C00076  Calcium cation
C00080  H+
C00089  Sucrose
C00095  D-Fructose
C00130  IMP
C00133  D-Alanine
C00144  GMP
C00149  (S)-Malate
C00158  Citrate
C00208  Maltose
C00238  Potassium cation
C00334  4-Aminobutanoate
C00547  L-Noradrenaline
C00575  3',5'-Cyclic AMP
C00740  D-Serine
C00780  Serotonin
C01245  D-myo-Inositol 1,4,5-trisphosphate
C01327  Hydrochloric acid
C01330  Sodium cation
C01451  Salicin
C01996  Acetylcholine
C02265  D-Phenylalanine
C06526  Quinine
C11045  Aspartame
C12283  Saccharin
C12284  Saccharin sodium anhydrous
C19378  Cyclamate
D08836  Acesulfame potassium (NF)
Reference
  Authors
Liman ER, Zhang YV, Montell C
  Title
Peripheral coding of taste.
  Journal
Neuron 81:984-1000 (2014)
DOI:10.1016/j.neuron.2014.02.022
Reference
  Authors
Kinnamon SC, Finger TE
  Title
A taste for ATP: neurotransmission in taste buds.
  Journal
Front Cell Neurosci 7:264 (2013)
DOI:10.3389/fncel.2013.00264
Reference
  Authors
Roper SD
  Title
Taste buds as peripheral chemosensory processors.
  Journal
Semin Cell Dev Biol 24:71-9 (2013)
DOI:10.1016/j.semcdb.2012.12.002
Reference
  Authors
Kinnamon SC
  Title
Taste receptor signalling - from tongues to lungs.
  Journal
Acta Physiol (Oxf) 204:158-68 (2012)
DOI:10.1111/j.1748-1716.2011.02308.x
Reference
  Authors
Kinnamon SC
  Title
Neurosensory transmission without a synapse: new perspectives on taste signaling.
  Journal
BMC Biol 11:42 (2013)
DOI:10.1186/1741-7007-11-42
Reference
  Authors
Chaudhari N, Roper SD
  Title
The cell biology of taste.
  Journal
J Cell Biol 190:285-96 (2010)
DOI:10.1083/jcb.201003144
Reference
  Authors
Vandenbeuch A, Kinnamon SC
  Title
Why do taste cells generate action potentials?
  Journal
J Biol 8:42 (2009)
DOI:10.1186/jbiol138
Reference
  Authors
Chandrashekar J, Hoon MA, Ryba NJ, Zuker CS
  Title
The receptors and cells for mammalian taste.
  Journal
Nature 444:288-94 (2006)
DOI:10.1038/nature05401
Reference
  Authors
Vandenbeuch A, Anderson CB, Parnes J, Enjyoji K, Robson SC, Finger TE, Kinnamon SC
  Title
Role of the ectonucleotidase NTPDase2 in taste bud function.
  Journal
Proc Natl Acad Sci U S A 110:14789-94 (2013)
DOI:10.1073/pnas.1309468110
Reference
  Authors
Taruno A, Vingtdeux V, Ohmoto M, Ma Z, Dvoryanchikov G, Li A, Adrien L, Zhao H, Leung S, Abernethy M, Koppel J, Davies P, Civan MM, Chaudhari N, Matsumoto I, Hellekant G, Tordoff MG, Marambaud P, Foskett JK
  Title
CALHM1 ion channel mediates purinergic neurotransmission of sweet, bitter and umami tastes.
  Journal
Nature 495:223-6 (2013)
DOI:10.1038/nature11906
Reference
  Authors
Gao N, Lu M, Echeverri F, Laita B, Kalabat D, Williams ME, Hevezi P, Zlotnik A, Moyer BD
  Title
Voltage-gated sodium channels in taste bud cells.
  Journal
BMC Neurosci 10:20 (2009)
DOI:10.1186/1471-2202-10-20
Reference
  Authors
Zheng W, Hussein S, Yang J, Huang J, Zhang F, Hernandez-Anzaldo S, Fernandez-Patron C, Cao Y, Zeng H, Tang J, Chen XZ
  Title
A novel PKD2L1 C-terminal domain critical for trimerization and channel function.
  Journal
Sci Rep 5:9460 (2015)
DOI:10.1038/srep09460
Reference
  Authors
Shimada S, Ueda T, Ishida Y, Yamamoto T, Ugawa S
  Title
Acid-sensing ion channels in taste buds.
  Journal
Arch Histol Cytol 69:227-31 (2006)
DOI:10.1679/aohc.69.227
Reference
  Authors
Dando R, Roper SD
  Title
Acetylcholine is released from taste cells, enhancing taste signalling.
  Journal
J Physiol 590:3009-17 (2012)
DOI:10.1113/jphysiol.2012.232009
Reference
  Authors
Kaya N, Shen T, Lu SG, Zhao FL, Herness S
  Title
A paracrine signaling role for serotonin in rat taste buds: expression and localization of serotonin receptor subtypes.
  Journal
Am J Physiol Regul Integr Comp Physiol 286:R649-58 (2004)
DOI:10.1152/ajpregu.00572.2003
Related
pathway
mdo04020  Calcium signaling pathway
KO pathway
ko04742   
LinkDB

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