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DANRE:Q9PTF9

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Species (Taxon ID) Danio rerio (Zebrafish) (Brachydanio rerio). (7955)
Gene Name(s) No Information Provided.
Protein Name(s) Bone morphogenetic protein 7 (ECO:0000313 with EMBL:AAF17558.1)

Uncharacterized protein (ECO:0000313 with Ensembl:ENSDARP00000017352)

External Links
UniProt Q9PTF9
EMBL CR925817
CU633826
AF201379
RefSeq NP_571396.1
UniGene Dr.77644
SMR Q9PTF9
Ensembl ENSDART00000016472
GeneID 30584
KEGG dre:30584
CTD 30584
ZFIN ZDB-GENE-000208-25
GeneTree ENSGT00760000118883
HOGENOM HOG000249476
HOVERGEN HBG004860
KO K16621
OMA YENETFH
PhylomeDB Q9PTF9
TreeFam TF316134
Reactome REACT_219441
NextBio 20806954
Proteomes UP000000437
GO GO:0005576
GO:0046982
GO:0042803
GO:0030509
GO:0003303
GO:0007368
GO:0048264
GO:0009953
GO:0003143
GO:0040007
GO:0001947
GO:0042664
GO:0036342
GO:0006461
Gene3D 2.10.90.10
InterPro IPR029034
IPR001839
IPR001111
IPR015615
IPR017948
PANTHER PTHR11848
Pfam PF00019
PF00688
SMART SM00204
SUPFAM SSF57501
PROSITE PS00250
PS51362

Annotations

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

involved_in

GO:0065003

protein-containing complex assembly

PMID:19377468[1]

ECO:0000315

mutant phenotype evidence used in manual assertion

ZFIN:ZDB-GENO-050216-1

P

Seeded From UniProt

complete

involved_in

GO:0048264

determination of ventral identity

PMID:16527746[2]

ECO:0000316

genetic interaction evidence used in manual assertion

ZFIN:ZDB-MRPHLNO-050902-2
ZFIN:ZDB-MRPHLNO-050902-3

P

Seeded From UniProt

complete

involved_in

GO:0048264

determination of ventral identity

PMID:16527746[2]

ECO:0000315

mutant phenotype evidence used in manual assertion

ZFIN:ZDB-MRPHLNO-050902-3

P

Seeded From UniProt

complete

involved_in

GO:0048264

determination of ventral identity

PMID:12601179[3]

ECO:0000315

mutant phenotype evidence used in manual assertion

ZFIN:ZDB-GENO-980202-1043

P

Seeded From UniProt

complete

involved_in

GO:0048264

determination of ventral identity

PMID:11477698[4]

ECO:0000315

mutant phenotype evidence used in manual assertion

ZFIN:ZDB-MRPHLNO-050902-3

P

Seeded From UniProt

complete

involved_in

GO:0048264

determination of ventral identity

PMID:11222140[5]

ECO:0000315

mutant phenotype evidence used in manual assertion

ZFIN:ZDB-GENO-980202-960

P

Seeded From UniProt

complete

involved_in

GO:0048264

determination of ventral identity

PMID:11222140[5]

ECO:0000314

direct assay evidence used in manual assertion

P

Seeded From UniProt

complete

enables

GO:0046982

protein heterodimerization activity

PMID:19377468[1]

ECO:0000353

physical interaction evidence used in manual assertion

UniProtKB:O13108

F

Seeded From UniProt

complete

enables

GO:0042803

protein homodimerization activity

PMID:19377468[1]

ECO:0000314

direct assay evidence used in manual assertion

F

Seeded From UniProt

complete

involved_in

GO:0042664

negative regulation of endodermal cell fate specification

PMID:16672336[6]

ECO:0000316

genetic interaction evidence used in manual assertion

ZFIN:ZDB-GENE-980526-474
ZFIN:ZDB-GENE-980528-2059

P

Seeded From UniProt

complete

involved_in

GO:0036342

post-anal tail morphogenesis

PMID:21610036[7]

ECO:0000315

mutant phenotype evidence used in manual assertion

ZFIN:ZDB-GENO-980202-1043

P

Seeded From UniProt

complete

involved_in

GO:0030509

BMP signaling pathway

PMID:9676195[8]

ECO:0000315

mutant phenotype evidence used in manual assertion

P

Seeded From UniProt

complete

involved_in

GO:0030509

BMP signaling pathway

PMID:19377468[1]

ECO:0000315

mutant phenotype evidence used in manual assertion

ZFIN:ZDB-GENO-050216-1

P

Seeded From UniProt

complete

involved_in

GO:0021703

locus ceruleus development

PMID:10595509[9]

ECO:0000315

mutant phenotype evidence used in manual assertion

ZFIN:ZDB-GENO-980202-1043

P

Seeded From UniProt

complete

involved_in

GO:0009953

dorsal/ventral pattern formation

PMID:11748837[10]

ECO:0000316

genetic interaction evidence used in manual assertion

ZFIN:ZDB-GENO-100422-2

P

Seeded From UniProt

complete

involved_in

GO:0009953

dorsal/ventral pattern formation

PMID:11969259[11]

ECO:0000315

mutant phenotype evidence used in manual assertion

ZFIN:ZDB-GENO-980202-1043

P

Seeded From UniProt

complete

involved_in

GO:0009953

dorsal/ventral pattern formation

PMID:11748837[10]

ECO:0000315

mutant phenotype evidence used in manual assertion

ZFIN:ZDB-GENO-980202-1043

P

Seeded From UniProt

complete

involved_in

GO:0009953

dorsal/ventral pattern formation

PMID:9676195[8]

ECO:0000270

expression pattern evidence used in manual assertion

P

Seeded From UniProt

complete

involved_in

GO:0007368

determination of left/right symmetry

PMID:9334285[12]

ECO:0000315

mutant phenotype evidence used in manual assertion

ZFIN:ZDB-GENO-980202-1043

P

Seeded From UniProt

complete

involved_in

GO:0003303

BMP signaling pathway involved in heart jogging

PMID:9334285[12]

ECO:0000315

mutant phenotype evidence used in manual assertion

ZFIN:ZDB-GENO-980202-1043

P

Seeded From UniProt

complete

involved_in

GO:0003143

embryonic heart tube morphogenesis

PMID:9334285[12]

ECO:0000315

mutant phenotype evidence used in manual assertion

ZFIN:ZDB-GENO-980202-1043

P

Seeded From UniProt

complete

involved_in

GO:0001947

heart looping

PMID:9334285[12]

ECO:0000315

mutant phenotype evidence used in manual assertion

ZFIN:ZDB-GENO-980202-1043

P

Seeded From UniProt

complete

enables

GO:0070700

BMP receptor binding

PMID:21873635[13]

ECO:0000318

biological aspect of ancestor evidence used in manual assertion

PANTHER:PTN000932177
UniProtKB:P22003
UniProtKB:P22004

F

Seeded From UniProt

complete

involved_in

GO:0060395

SMAD protein signal transduction

PMID:21873635[13]

ECO:0000318

biological aspect of ancestor evidence used in manual assertion

MGI:MGI:1338027
MGI:MGI:88180
MGI:MGI:88182
MGI:MGI:95689
MGI:MGI:97359
PANTHER:PTN000218063
UniProtKB:O95390
UniProtKB:P12643
UniProtKB:P12644
UniProtKB:P18075
UniProtKB:P22004
UniProtKB:P43026
UniProtKB:P61812
UniProtKB:Q6KF10
UniProtKB:Q99988

P

Seeded From UniProt

complete

involved_in

GO:0048468

cell development

PMID:21873635[13]

ECO:0000318

biological aspect of ancestor evidence used in manual assertion

MGI:MGI:103302
PANTHER:PTN000218063

P

Seeded From UniProt

complete

involved_in

GO:0043408

regulation of MAPK cascade

PMID:21873635[13]

ECO:0000318

biological aspect of ancestor evidence used in manual assertion

MGI:MGI:107335
PANTHER:PTN000218063

P

Seeded From UniProt

complete

involved_in

GO:0042981

regulation of apoptotic process

PMID:21873635[13]

ECO:0000318

biological aspect of ancestor evidence used in manual assertion

MGI:MGI:98726
PANTHER:PTN000218063

P

Seeded From UniProt

complete

involved_in

GO:0030509

BMP signaling pathway

PMID:21873635[13]

ECO:0000318

biological aspect of ancestor evidence used in manual assertion

MGI:MGI:103302
MGI:MGI:88182
PANTHER:PTN000932177
UniProtKB:P18075
UniProtKB:P22004

P

Seeded From UniProt

complete

involved_in

GO:0010862

positive regulation of pathway-restricted SMAD protein phosphorylation

PMID:21873635[13]

ECO:0000318

biological aspect of ancestor evidence used in manual assertion

MGI:MGI:107335
MGI:MGI:1338820
MGI:MGI:88182
MGI:MGI:95684
MGI:MGI:98727
PANTHER:PTN000218063
UniProtKB:O95393
UniProtKB:P01137
UniProtKB:P08476
UniProtKB:P12643
UniProtKB:P12644
UniProtKB:P18075
UniProtKB:P22003
UniProtKB:P22004
UniProtKB:Q6KF10
UniProtKB:Q7Z4P5
UniProtKB:Q96S42
UniProtKB:Q9UK05

P

Seeded From UniProt

complete

part_of

GO:0005615

extracellular space

PMID:21873635[13]

ECO:0000318

biological aspect of ancestor evidence used in manual assertion

FB:FBgn0000490
MGI:MGI:103302
MGI:MGI:1338027
MGI:MGI:88177
MGI:MGI:88180
MGI:MGI:95691
MGI:MGI:98725
MGI:MGI:98726
PANTHER:PTN000218063
RGD:1305979
RGD:2211
RGD:2212
RGD:2213
RGD:2214
RGD:2912
RGD:2913
RGD:3115
RGD:3851
RGD:62074
RGD:620743
RGD:621512
RGD:69051
RGD:70491
UniProtKB:O14793
UniProtKB:O42220
UniProtKB:O95393
UniProtKB:P01137
UniProtKB:P12643
UniProtKB:P12644
UniProtKB:P18075
UniProtKB:P30371
UniProtKB:P61812
UniProtKB:Q96S42
UniProtKB:Q99988
WB:WBGene00000903

C

Seeded From UniProt

complete

enables

GO:0005160

transforming growth factor beta receptor binding

PMID:21873635[13]

ECO:0000318

biological aspect of ancestor evidence used in manual assertion

MGI:MGI:98725
PANTHER:PTN000218063
UniProtKB:P61812

F

Seeded From UniProt

complete

enables

GO:0005125

cytokine activity

PMID:21873635[13]

ECO:0000318

biological aspect of ancestor evidence used in manual assertion

PANTHER:PTN000218063
UniProtKB:P08476
UniProtKB:P12644

F

Seeded From UniProt

complete

enables

GO:0008083

growth factor activity

GO_REF:0000002

ECO:0000256

match to sequence model evidence used in automatic assertion

InterPro:IPR001839
InterPro:IPR017948

F

Seeded From UniProt

complete

enables

GO:0008083

growth factor activity

GO_REF:0000038

ECO:0000323

imported automatically asserted information used in automatic assertion

UniProtKB-KW:KW-0339

F

Seeded From UniProt

complete

part_of

GO:0005576

extracellular region

GO_REF:0000038

ECO:0000323

imported automatically asserted information used in automatic assertion

UniProtKB-KW:KW-0964

C

Seeded From UniProt

complete

part_of

GO:0005576

extracellular region

GO_REF:0000040

ECO:0000323

imported automatically asserted information used in automatic assertion

UniProtKB-SubCell:SL-0243

C

Seeded From UniProt

complete

Notes

References

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

  1. 1.0 1.1 1.2 1.3 Little, SC & Mullins, MC (2009) Bone morphogenetic protein heterodimers assemble heteromeric type I receptor complexes to pattern the dorsoventral axis. Nat. Cell Biol. 11 637-43 PubMed GONUTS page
  2. 2.0 2.1 Hogan, BM et al. (2006) Specification of the primitive myeloid precursor pool requires signaling through Alk8 in zebrafish. Curr. Biol. 16 506-11 PubMed GONUTS page
  3. Sidi, S et al. (2003) Maternal induction of ventral fate by zebrafish radar. Proc. Natl. Acad. Sci. U.S.A. 100 3315-20 PubMed GONUTS page
  4. Imai, Y & Talbot, WS (2001) Morpholino phenocopies of the bmp2b/swirl and bmp7/snailhouse mutations. Genesis 30 160-3 PubMed GONUTS page
  5. 5.0 5.1 Bauer, H et al. (2001) The type I serine/threonine kinase receptor Alk8/Lost-a-fin is required for Bmp2b/7 signal transduction during dorsoventral patterning of the zebrafish embryo. Development 128 849-58 PubMed GONUTS page
  6. Poulain, M et al. (2006) Zebrafish endoderm formation is regulated by combinatorial Nodal, FGF and BMP signalling. Development 133 2189-200 PubMed GONUTS page
  7. Yang, Y & Thorpe, C (2011) BMP and non-canonical Wnt signaling are required for inhibition of secondary tail formation in zebrafish. Development 138 2601-11 PubMed GONUTS page
  8. 8.0 8.1 Nguyen, VH et al. (1998) Ventral and lateral regions of the zebrafish gastrula, including the neural crest progenitors, are established by a bmp2b/swirl pathway of genes. Dev. Biol. 199 93-110 PubMed GONUTS page
  9. Guo, S et al. (1999) Development of noradrenergic neurons in the zebrafish hindbrain requires BMP, FGF8, and the homeodomain protein soulless/Phox2a. Neuron 24 555-66 PubMed GONUTS page
  10. 10.0 10.1 Grinblat, Y & Sive, H (2001) zic Gene expression marks anteroposterior pattern in the presumptive neurectoderm of the zebrafish gastrula. Dev. Dyn. 222 688-93 PubMed GONUTS page
  11. Wagner, DS & Mullins, MC (2002) Modulation of BMP activity in dorsal-ventral pattern formation by the chordin and ogon antagonists. Dev. Biol. 245 109-23 PubMed GONUTS page
  12. 12.0 12.1 12.2 12.3 Chen, JN et al. (1997) Left-right pattern of cardiac BMP4 may drive asymmetry of the heart in zebrafish. Development 124 4373-82 PubMed GONUTS page
  13. 13.0 13.1 13.2 13.3 13.4 13.5 13.6 13.7 13.8 13.9 Gaudet, P et al. (2011) Phylogenetic-based propagation of functional annotations within the Gene Ontology consortium. Brief. Bioinformatics 12 449-62 PubMed GONUTS page