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CAEEL:G5EEE2

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Species (Taxon ID) Caenorhabditis elegans. (6239)
Gene Name(s) No Information Provided.
Protein Name(s) Protein TAX-2 (ECO:0000313 with EMBL:CAB04328.1)

TAX2 (ECO:0000313 with EMBL:ACQ43993.1)

External Links
UniProt G5EEE2
EMBL FJ455695
FJ455696
FJ455697
FJ455698
FJ455699
FJ455700
FJ455701
FJ455702
FJ455703
FJ455704
FJ455705
FJ455706
Z81532
Z93778
PIR T19627
RefSeq NP_492427.3
UniGene Cel.19698
SMR G5EEE2
TCDB 1.A.1.5.19
EnsemblMetazoa F36F2.5
GeneID 172723
KEGG cel:CELE_F36F2.5
CTD 172723
WormBase F36F2.5
GeneTree ENSGT00760000118772
KO K05326
OMA DEVESPI
OrthoDB EOG75F4CM
PhylomeDB G5EEE2
Reactome REACT_184868
REACT_197698
NextBio 876741
Proteomes UP000001940
ExpressionAtlas G5EEE2
GO GO:0005887
GO:0030553
GO:0005222
GO:0005223
GO:0005249
GO:0009454
GO:0006935
GO:0048812
GO:0007603
GO:0045944
GO:0071805
GO:0030516
GO:0042391
GO:0045664
GO:0055093
Gene3D 2.60.120.10
InterPro IPR018490
IPR018488
IPR000595
IPR014710
Pfam PF00027
SMART SM00100
SUPFAM SSF51206
PROSITE PS00888
PS00889
PS50042

Annotations

Qualifier GO ID GO term name Reference ECO ID ECO term name with/from Aspect Extension Notes Status

part_of

GO:0034703

cation channel complex

PMID:10064800[1]

ECO:0000314

direct assay evidence used in manual assertion

C

Seeded From UniProt

complete

involved_in

GO:0010754

negative regulation of cGMP-mediated signaling

PMID:23940325[2]

ECO:0000315

mutant phenotype evidence used in manual assertion

P

occurs_in:(WBbt:0004096)

Seeded From UniProt

complete

involved_in

GO:0070482

response to oxygen levels

PMID:23940325[2]

ECO:0000315

mutant phenotype evidence used in manual assertion

P

occurs_in:(WBbt:0004096)

Seeded From UniProt

complete

involved_in

GO:0007199

G protein-coupled receptor signaling pathway coupled to cGMP nucleotide second messenger

PMID:20436480[3]

ECO:0000315

mutant phenotype evidence used in manual assertion

P

occurs_in:(WBbt:0005667)

Seeded From UniProt

complete

contributes_to

GO:0005223

intracellular cGMP-activated cation channel activity

PMID:10064800[1]

ECO:0000314

direct assay evidence used in manual assertion

F

Seeded From UniProt

complete

involved_in

GO:0098655

cation transmembrane transport

PMID:10064800[1]

ECO:0000314

direct assay evidence used in manual assertion

P

Seeded From UniProt

complete

involved_in

GO:0040040

thermosensory behavior

PMID:7630402[4]

ECO:0000315

mutant phenotype evidence used in manual assertion

P

Seeded From UniProt

complete

involved_in

GO:0010628

positive regulation of gene expression

PMID:25303524[5]

ECO:0000315

mutant phenotype evidence used in manual assertion

P

  • has_regulation_target:(UniProtKB:P92172)
  • occurs_in:(WBbt:0005666)
  • occurs_in:(WBbt:0005667)

Seeded From UniProt

complete

involved_in

GO:0055093

response to hyperoxia

PMID:15220933[6]

ECO:0000315

mutant phenotype evidence used in manual assertion

WB:WBVar00095119

P

Seeded From UniProt

complete

involved_in

GO:0048812

neuron projection morphogenesis

PMID:14711416[7]

ECO:0000315

mutant phenotype evidence used in manual assertion

WB:WBVar00095119

P

Seeded From UniProt

complete

involved_in

GO:0045944

positive regulation of transcription by RNA polymerase II

PMID:14711416[7]

ECO:0000315

mutant phenotype evidence used in manual assertion

WB:WBVar00095031
WB:WBVar00095119

P

Seeded From UniProt

complete

involved_in

GO:0045664

regulation of neuron differentiation

PMID:14711416[7]

ECO:0000315

mutant phenotype evidence used in manual assertion

WB:WBVar00095031
WB:WBVar00095119

P

Seeded From UniProt

complete

involved_in

GO:0030516

regulation of axon extension

PMID:9486798[8]

ECO:0000315

mutant phenotype evidence used in manual assertion

WB:WBVar00088282
WB:WBVar00095119

P

Seeded From UniProt

complete

involved_in

GO:0009454

aerotaxis

PMID:15220933[6]

ECO:0000315

mutant phenotype evidence used in manual assertion

WB:WBVar00095119

P

Seeded From UniProt

complete

involved_in

GO:0006935

chemotaxis

PMID:9486798[8]

ECO:0000315

mutant phenotype evidence used in manual assertion

WB:WBVar00088282

P

Seeded From UniProt

complete

enables

GO:0030553

cGMP binding

PMID:21873635[9]

ECO:0000318

biological aspect of ancestor evidence used in manual assertion

PANTHER:PTN000025739
UniProtKB:Q14028
UniProtKB:Q9NQW8

F

Seeded From UniProt

complete

enables

GO:0005223

intracellular cGMP-activated cation channel activity

PMID:21873635[9]

ECO:0000318

biological aspect of ancestor evidence used in manual assertion

MGI:MGI:1353562
PANTHER:PTN000025739
RGD:621809
UniProtKB:Q14028
UniProtKB:Q9NQW8
WB:WBGene00006525

F

Seeded From UniProt

complete

enables

GO:0005222

intracellular cAMP-activated cation channel activity

PMID:21873635[9]

ECO:0000318

biological aspect of ancestor evidence used in manual assertion

PANTHER:PTN000025739
RGD:621809

F

Seeded From UniProt

complete

part_of

GO:0016020

membrane

GO_REF:0000038

ECO:0000323

imported automatically asserted information used in automatic assertion

UniProtKB-KW:KW-0472

C

Seeded From UniProt

complete

part_of

GO:0016021

integral component of membrane

GO_REF:0000038

ECO:0000323

imported automatically asserted information used in automatic assertion

UniProtKB-KW:KW-0812

C

Seeded From UniProt

complete

Notes

References

See Help:References for how to manage references in GONUTS.

  1. 1.0 1.1 1.2 Komatsu, H et al. (1999) Functional reconstitution of a heteromeric cyclic nucleotide-gated channel of Caenorhabditis elegans in cultured cells. Brain Res. 821 160-8 PubMed GONUTS page
  2. 2.0 2.1 Couto, A et al. (2013) In vivo genetic dissection of O2-evoked cGMP dynamics in a Caenorhabditis elegans gas sensor. Proc. Natl. Acad. Sci. U.S.A. 110 E3301-10 PubMed GONUTS page
  3. Liu, J et al. (2010) C. elegans phototransduction requires a G protein-dependent cGMP pathway and a taste receptor homolog. Nat. Neurosci. 13 715-22 PubMed GONUTS page
  4. Mori, I & Ohshima, Y (1995) Neural regulation of thermotaxis in Caenorhabditis elegans. Nature 376 344-8 PubMed GONUTS page
  5. Meisel, JD et al. (2014) Chemosensation of bacterial secondary metabolites modulates neuroendocrine signaling and behavior of C. elegans. Cell 159 267-80 PubMed GONUTS page
  6. 6.0 6.1 Gray, JM et al. (2004) Oxygen sensation and social feeding mediated by a C. elegans guanylate cyclase homologue. Nature 430 317-22 PubMed GONUTS page
  7. 7.0 7.1 7.2 Satterlee, JS et al. (2004) The CMK-1 CaMKI and the TAX-4 Cyclic nucleotide-gated channel regulate thermosensory neuron gene expression and function in C. elegans. Curr. Biol. 14 62-8 PubMed GONUTS page
  8. 8.0 8.1 Coburn, CM et al. (1998) A cyclic nucleotide-gated channel inhibits sensory axon outgrowth in larval and adult Caenorhabditis elegans: a distinct pathway for maintenance of sensory axon structure. Development 125 249-58 PubMed GONUTS page
  9. 9.0 9.1 9.2 Gaudet, P et al. (2011) Phylogenetic-based propagation of functional annotations within the Gene Ontology consortium. Brief. Bioinformatics 12 449-62 PubMed GONUTS page