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RAT:CCKN

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Species (Taxon ID) Rattus norvegicus (Rat). (10116)
Gene Name(s) Cck
Protein Name(s) Cholecystokinin

CCK Cholecystokinin-39 CCK39 Cholecystokinin-33 CCK33 Cholecystokinin-22 CCK22 Cholecystokinin-12 CCK12 Cholecystokinin-8 CCK8

External Links
UniProt P01355
EMBL X01032
K01259
M25942
M10353
M10352
PIR A01624
RefSeq NP_036961.1
UniGene Rn.9781
ProteinModelPortal P01355
STRING 10116.ENSRNOP00000026159
BindingDB P01355
PaxDb P01355
PRIDE P01355
Ensembl ENSRNOT00000026159
GeneID 25298
KEGG rno:25298
UCSC RGD:2288
CTD 885
RGD 2288
eggNOG NOG40485
GeneTree ENSGT00390000003571
HOGENOM HOG000073533
HOVERGEN HBG005806
InParanoid P01355
KO K05226
OMA MPHADPT
OrthoDB EOG7F7WBS
PhylomeDB P01355
TreeFam TF333419
Reactome REACT_250028
REACT_263374
NextBio 606067
PMAP-CutDB P01355
PRO PR:P01355
Proteomes UP000002494
Genevestigator P01355
GO GO:0030424
GO:0043203
GO:0043194
GO:0030425
GO:0005576
GO:0005615
GO:0043025
GO:0043204
GO:0043195
GO:0005179
GO:0005184
GO:0006919
GO:0006915
GO:0007409
GO:0001662
GO:0042755
GO:0032099
GO:0001764
GO:0043065
GO:0008284
GO:0051901
GO:0050731
GO:0032461
GO:0007205
GO:0051930
GO:0001836
InterPro IPR015499
IPR001651
IPR013152
PANTHER PTHR10786
Pfam PF00918
SMART SM00029
PROSITE PS00259

Annotations

Qualifier GO ID GO term name Reference ECO ID ECO term name with/from Aspect Extension Notes Status
GO:0014049

positive regulation of glutamate secretion

PMID:20392936[1]

ECO:0000314

P

Fig 5 shows that CCK increases glutamate release through inhibition of calcium channels.

complete
CACAO 6370

involved_in

GO:0014049

positive regulation of glutamate secretion

PMID:20392936[1]

ECO:0000314

direct assay evidence used in manual assertion

P

Seeded From UniProt

complete

involved_in

GO:0042755

eating behavior

PMID:15374756[2]

ECO:0000250

sequence similarity evidence used in manual assertion

UniProtKB:P09240

P

Seeded From UniProt

complete

part_of

GO:0030424

axon

PMID:15152034[3]

ECO:0000250

sequence similarity evidence used in manual assertion

UniProtKB:P09240

C

Seeded From UniProt

complete

involved_in

GO:0007409

axonogenesis

PMID:15152034[3]

ECO:0000250

sequence similarity evidence used in manual assertion

UniProtKB:P09240

P

Seeded From UniProt

complete

enables

GO:0005184

neuropeptide hormone activity

PMID:15374756[2]

ECO:0000250

sequence similarity evidence used in manual assertion

UniProtKB:P09240

F

Seeded From UniProt

complete

involved_in

GO:0001764

neuron migration

PMID:15152034[3]

ECO:0000250

sequence similarity evidence used in manual assertion

UniProtKB:P09240

P

Seeded From UniProt

complete

involved_in

GO:2000987

positive regulation of behavioral fear response

PMID:12373548[4]

ECO:0000314

direct assay evidence used in manual assertion

P

Seeded From UniProt

complete

involved_in

GO:2000986

negative regulation of behavioral fear response

PMID:12450740[5]

ECO:0000315

mutant phenotype evidence used in manual assertion

P

Seeded From UniProt

complete

involved_in

GO:1904058

positive regulation of sensory perception of pain

PMID:15647484[6]

ECO:0000314

direct assay evidence used in manual assertion

P

Seeded From UniProt

complete

involved_in

GO:1903999

negative regulation of eating behavior

PMID:6185005[7]

ECO:0000314

direct assay evidence used in manual assertion

P

Seeded From UniProt

complete

involved_in

GO:0051930

regulation of sensory perception of pain

PMID:17157334[8]

ECO:0000314

direct assay evidence used in manual assertion

P

Seeded From UniProt

complete

involved_in

GO:0051901

positive regulation of mitochondrial depolarization

PMID:11964411[9]

ECO:0000314

direct assay evidence used in manual assertion

P

Seeded From UniProt

complete

involved_in

GO:0050731

positive regulation of peptidyl-tyrosine phosphorylation

PMID:12496267[10]

ECO:0000314

direct assay evidence used in manual assertion

P

Seeded From UniProt

complete

part_of

GO:0043204

perikaryon

PMID:12763251[11]

ECO:0000314

direct assay evidence used in manual assertion

C

Seeded From UniProt

complete

part_of

GO:0043203

axon hillock

PMID:12763251[11]

ECO:0000314

direct assay evidence used in manual assertion

C

Seeded From UniProt

complete

part_of

GO:0043195

terminal bouton

PMID:12763251[11]

ECO:0000314

direct assay evidence used in manual assertion

C

Seeded From UniProt

complete

part_of

GO:0043194

axon initial segment

PMID:12763251[11]

ECO:0000314

direct assay evidence used in manual assertion

C

Seeded From UniProt

complete

involved_in

GO:0043065

positive regulation of apoptotic process

PMID:11964411[9]

ECO:0000314

direct assay evidence used in manual assertion

P

Seeded From UniProt

complete

part_of

GO:0043025

neuronal cell body

PMID:12927199[12]

ECO:0000314

direct assay evidence used in manual assertion

C

Seeded From UniProt

complete

involved_in

GO:0042755

eating behavior

PMID:15890776[13]

ECO:0000314

direct assay evidence used in manual assertion

P

Seeded From UniProt

complete

involved_in

GO:0032461

positive regulation of protein oligomerization

PMID:12496267[10]

ECO:0000314

direct assay evidence used in manual assertion

P

Seeded From UniProt

complete

involved_in

GO:0032099

negative regulation of appetite

PMID:12615048[14]

ECO:0000314

direct assay evidence used in manual assertion

P

Seeded From UniProt

complete

part_of

GO:0030425

dendrite

PMID:12927199[12]

ECO:0000314

direct assay evidence used in manual assertion

C

Seeded From UniProt

complete

involved_in

GO:0008542

visual learning

PMID:12450740[5]

ECO:0000315

mutant phenotype evidence used in manual assertion

P

Seeded From UniProt

complete

involved_in

GO:0008284

positive regulation of cell population proliferation

PMID:15536283[15]

ECO:0000314

direct assay evidence used in manual assertion

P

Seeded From UniProt

complete

involved_in

GO:0007613

memory

PMID:12450740[5]

ECO:0000315

mutant phenotype evidence used in manual assertion

P

Seeded From UniProt

complete

involved_in

GO:0007205

protein kinase C-activating G protein-coupled receptor signaling pathway

PMID:12496267[10]

ECO:0000314

direct assay evidence used in manual assertion

P

Seeded From UniProt

complete

involved_in

GO:0006919

activation of cysteine-type endopeptidase activity involved in apoptotic process

PMID:11964411[9]

ECO:0000314

direct assay evidence used in manual assertion

P

Seeded From UniProt

complete

involved_in

GO:0006915

apoptotic process

PMID:11964411[9]

ECO:0000314

direct assay evidence used in manual assertion

P

Seeded From UniProt

complete

part_of

GO:0005615

extracellular space

PMID:8208365[16]

ECO:0000314

direct assay evidence used in manual assertion

C

Seeded From UniProt

complete

part_of

GO:0005576

extracellular region

PMID:11964411[9]

ECO:0000303

author statement without traceable support used in manual assertion

C

Seeded From UniProt

complete

enables

GO:0005184

neuropeptide hormone activity

PMID:15647484[6]

ECO:0000314

direct assay evidence used in manual assertion

F

Seeded From UniProt

complete

enables

GO:0005179

hormone activity

PMID:15890776[13]

ECO:0000314

direct assay evidence used in manual assertion

F

Seeded From UniProt

complete

enables

GO:0005179

hormone activity

PMID:11964411[9]

ECO:0000303

author statement without traceable support used in manual assertion

F

Seeded From UniProt

complete

involved_in

GO:0001836

release of cytochrome c from mitochondria

PMID:11964411[9]

ECO:0000314

direct assay evidence used in manual assertion

P

Seeded From UniProt

complete

part_of

GO:0030424

axon

PMID:21873635[17]

ECO:0000318

biological aspect of ancestor evidence used in manual assertion

MGI:MGI:88297
PANTHER:PTN002583982

C

Seeded From UniProt

complete

involved_in

GO:0007586

digestion

PMID:21873635[17]

ECO:0000318

biological aspect of ancestor evidence used in manual assertion

PANTHER:PTN002583982
UniProtKB:Q9PU41

P

Seeded From UniProt

complete

part_of

GO:0005615

extracellular space

PMID:21873635[17]

ECO:0000318

biological aspect of ancestor evidence used in manual assertion

PANTHER:PTN002583982
RGD:2288
UniProtKB:F1MC79
UniProtKB:P41520

C

Seeded From UniProt

complete

enables

GO:0005184

neuropeptide hormone activity

PMID:21873635[17]

ECO:0000318

biological aspect of ancestor evidence used in manual assertion

MGI:MGI:88297
PANTHER:PTN002583982
RGD:2288

F

Seeded From UniProt

complete

enables

GO:0005179

hormone activity

PMID:21873635[17]

ECO:0000318

biological aspect of ancestor evidence used in manual assertion

PANTHER:PTN002583982
RGD:2288

F

Seeded From UniProt

complete

involved_in

GO:0010469

regulation of signaling receptor activity

GO_REF:0000108

ECO:0000364

evidence based on logical inference from manual annotation used in automatic assertion

GO:0005184

P

Seeded From UniProt

complete

involved_in

GO:0010469

regulation of signaling receptor activity

GO_REF:0000108

ECO:0000366

evidence based on logical inference from automatic annotation used in automatic assertion

GO:0005179

P

Seeded From UniProt

complete

involved_in

GO:0010469

regulation of signaling receptor activity

GO_REF:0000108

ECO:0000366

evidence based on logical inference from automatic annotation used in automatic assertion

GO:0005184

P

Seeded From UniProt

complete

involved_in

GO:0010469

regulation of signaling receptor activity

GO_REF:0000108

ECO:0000364

evidence based on logical inference from manual annotation used in automatic assertion

GO:0005179

P

Seeded From UniProt

complete

involved_in

GO:0010469

regulation of signaling receptor activity

GO_REF:0000108

ECO:0000364

evidence based on logical inference from manual annotation used in automatic assertion

GO:0005184

P

Seeded From UniProt

complete

involved_in

GO:0010469

regulation of signaling receptor activity

GO_REF:0000108

ECO:0000364

evidence based on logical inference from manual annotation used in automatic assertion

GO:0005179

P

Seeded From UniProt

complete

involved_in

GO:0010469

regulation of signaling receptor activity

GO_REF:0000108

ECO:0000364

evidence based on logical inference from manual annotation used in automatic assertion

GO:0005184

P

Seeded From UniProt

complete

involved_in

GO:0010469

regulation of signaling receptor activity

GO_REF:0000108

ECO:0000364

evidence based on logical inference from manual annotation used in automatic assertion

GO:0005179

P

Seeded From UniProt

complete

involved_in

GO:0010469

regulation of signaling receptor activity

GO_REF:0000108

ECO:0000366

evidence based on logical inference from automatic annotation used in automatic assertion

GO:0005179

P

Seeded From UniProt

complete

enables

GO:0051428

peptide hormone receptor binding

GO_REF:0000107

ECO:0000265

sequence orthology evidence used in automatic assertion

UniProtKB:P06307
ensembl:ENSP00000379472

F

Seeded From UniProt

complete

involved_in

GO:0042755

eating behavior

GO_REF:0000107

ECO:0000265

sequence orthology evidence used in automatic assertion

UniProtKB:P09240
ensembl:ENSMUSP00000149679

P

Seeded From UniProt

complete

part_of

GO:0030424

axon

GO_REF:0000107

ECO:0000265

sequence orthology evidence used in automatic assertion

UniProtKB:P09240
ensembl:ENSMUSP00000149679

C

Seeded From UniProt

complete

involved_in

GO:0007409

axonogenesis

GO_REF:0000107

ECO:0000265

sequence orthology evidence used in automatic assertion

UniProtKB:P09240
ensembl:ENSMUSP00000149679

P

Seeded From UniProt

complete

enables

GO:0005184

neuropeptide hormone activity

GO_REF:0000107

ECO:0000265

sequence orthology evidence used in automatic assertion

UniProtKB:P09240
ensembl:ENSMUSP00000149679

F

Seeded From UniProt

complete

involved_in

GO:0001764

neuron migration

GO_REF:0000107

ECO:0000265

sequence orthology evidence used in automatic assertion

UniProtKB:P09240
ensembl:ENSMUSP00000149679

P

Seeded From UniProt

complete

enables

GO:0005179

hormone activity

GO_REF:0000002

ECO:0000256

match to sequence model evidence used in automatic assertion

InterPro:IPR001651

F

Seeded From UniProt

complete

part_of

GO:0005576

extracellular region

GO_REF:0000002

ECO:0000256

match to sequence model evidence used in automatic assertion

InterPro:IPR001651

C

Seeded From UniProt

complete

part_of

GO:0005576

extracellular region

GO_REF:0000037
GO_REF:0000039

ECO:0000322

imported manually asserted information used in automatic assertion

UniProtKB-KW:KW-0964
UniProtKB-SubCell:SL-0243

C

Seeded From UniProt

complete

enables

GO:0005179

hormone activity

GO_REF:0000037

ECO:0000322

imported manually asserted information used in automatic assertion

UniProtKB-KW:KW-0372

F

Seeded From UniProt

complete

Notes

References

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

  1. 1.0 1.1 Deng, PY et al. (2010) Cholecystokinin facilitates glutamate release by increasing the number of readily releasable vesicles and releasing probability. J. Neurosci. 30 5136-48 PubMed GONUTS page
  2. 2.0 2.1 Hnasko, TS et al. (2004) A role for dopamine in feeding responses produced by orexigenic agents. Brain Res. 1023 309-18 PubMed GONUTS page
  3. 3.0 3.1 3.2 Giacobini, P et al. (2004) Cholecystokinin modulates migration of gonadotropin-releasing hormone-1 neurons. J. Neurosci. 24 4737-48 PubMed GONUTS page
  4. Hernandez-Gómez, AM et al. (2002) Role of cholecystokinin-A and cholecystokinin-B receptors in anxiety. Amino Acids 23 283-90 PubMed GONUTS page
  5. 5.0 5.1 5.2 Cohen, H et al. (2002) Effect of intraperitoneal mRNA antisense-oligodeoxynucleotides to cholecystokinin on anxiety-like and learning behaviors in rats: association with pre-experimental stress. Neuropeptides 36 341-52 PubMed GONUTS page
  6. 6.0 6.1 Xie, JY et al. (2005) Cholecystokinin in the rostral ventromedial medulla mediates opioid-induced hyperalgesia and antinociceptive tolerance. J. Neurosci. 25 409-16 PubMed GONUTS page
  7. McLaughlin, CL et al. (1983) Hyperphagia during lactation: satiety response to CCK and growth of the pancreas. Am. J. Physiol. 244 E61-5 PubMed GONUTS page
  8. Torres-López, JE et al. (2007) Peripheral participation of cholecystokinin in the morphine-induced peripheral antinociceptive effect in non-diabetic and diabetic rats. Neuropharmacology 52 788-95 PubMed GONUTS page
  9. 9.0 9.1 9.2 9.3 9.4 9.5 9.6 Gukovskaya, AS et al. (2002) Cholecystokinin induces caspase activation and mitochondrial dysfunction in pancreatic acinar cells. Roles in cell injury processes of pancreatitis. J. Biol. Chem. 277 22595-604 PubMed GONUTS page
  10. 10.0 10.1 10.2 Piiper, A et al. (2003) Cholecystokinin stimulates extracellular signal-regulated kinase through activation of the epidermal growth factor receptor, Yes, and protein kinase C. Signal amplification at the level of Raf by activation of protein kinase Cepsilon. J. Biol. Chem. 278 7065-72 PubMed GONUTS page
  11. 11.0 11.1 11.2 11.3 Mascagni, F & McDonald, AJ (2003) Immunohistochemical characterization of cholecystokinin containing neurons in the rat basolateral amygdala. Brain Res. 976 171-84 PubMed GONUTS page
  12. 12.0 12.1 Morozov, YM & Freund, TF (2003) Postnatal development and migration of cholecystokinin-immunoreactive interneurons in rat hippocampus. Neuroscience 120 923-39 PubMed GONUTS page
  13. 13.0 13.1 Date, Y et al. (2005) Peripheral interaction of ghrelin with cholecystokinin on feeding regulation. Endocrinology 146 3518-25 PubMed GONUTS page
  14. Gay, J et al. (2003) Alteration of CCK-induced satiety in post-Nippostrongylus brasiliensis-infected rats. Brain Behav. Immun. 17 35-42 PubMed GONUTS page
  15. Kuntz, E et al. (2004) Cholecystokinin octapeptide: a potential growth factor for pancreatic beta cells in diabetic rats. JOP 5 464-75 PubMed GONUTS page
  16. Beinfeld, MC (1994) Inhibition of pro-cholecystokinin (CCK) sulfation by treatment with sodium chlorate alters its processing and decreases cellular content and secretion of CCK 8. Neuropeptides 26 195-200 PubMed GONUTS page
  17. 17.0 17.1 17.2 17.3 17.4 Gaudet, P et al. (2011) Phylogenetic-based propagation of functional annotations within the Gene Ontology consortium. Brief. Bioinformatics 12 449-62 PubMed GONUTS page