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SCHPO:SYB1

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Species (Taxon ID) Schizosaccharomyces pombe (strain 972 / ATCC 24843) (Fission yeast). (284812)
Gene Name(s) syb1
Protein Name(s) Synaptobrevin homolog 1
External Links
UniProt Q92356
EMBL CU329670
PIR T39073
RefSeq NP_594120.1
ProteinModelPortal Q92356
SMR Q92356
BioGrid 278225
STRING 4896.SPAC6G9.11.1
iPTMnet Q92356
MaxQB Q92356
PaxDb Q92356
PRIDE Q92356
EnsemblFungi SPAC6G9.11.1
GeneID 2541731
KEGG spo:SPAC6G9.11
EuPathDB FungiDB:SPAC6G9.11
PomBase SPAC6G9.11
HOGENOM HOG000042711
InParanoid Q92356
KO K08513
OMA MWWKDFK
PhylomeDB Q92356
PRO PR:Q92356
Proteomes UP000002485
GO GO:0051285
GO:0032153
GO:0051286
GO:0005737
GO:0030659
GO:0005783
GO:0005794
GO:0016021
GO:0090619
GO:0005484
GO:0006886
GO:0099097
GO:0016192
InterPro IPR001388
IPR016444
Pfam PF00957
PIRSF PIRSF005409
PRINTS PR00219
PROSITE PS00417
PS50892

Annotations

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

Colocalizes with

GO:0032154

cleavage furrow

PMID:27082518[1]

ECO:0000314

C

we tracked the directional movement of v-SNARE Syb1 labeled post-Golgi vesicles towards the division site during ring constriction (Fig 2B–2G; S1 Video, middle panels). Surprisingly, individual punctum could travel to the regions close to the constricting ring (Fig 2B and 2C), to the rim of the division plane where the exocyst localizes, or to other locations along the cleavage furrow (S1 Video, middle panels). Synaptobrevin homolog 1, Schizosaccharomyces pombe

complete
CACAO 12397

involved_in

GO:0099097

prospore membrane biogenesis

PMID:19202289[2]

ECO:0000316

genetic interaction evidence used in manual assertion

PomBase:SPBC26H8.02c

P

Seeded From UniProt

complete

part_of

GO:0090619

meiotic spindle pole

PMID:27630265[3]

ECO:0000314

direct assay evidence used in manual assertion

C

exists_during:(GO:0007133)

Seeded From UniProt

complete

part_of

GO:0051286

cell tip

PMID:21652630[4]

ECO:0000314

direct assay evidence used in manual assertion

C

Seeded From UniProt

complete

part_of

GO:0051285

cell cortex of cell tip

PMID:12565827[5]

ECO:0000314

direct assay evidence used in manual assertion

C

Seeded From UniProt

complete

part_of

GO:0032153

cell division site

PMID:27082518[1]

ECO:0000314

direct assay evidence used in manual assertion

C

exists_during:(GO:0000087)

Seeded From UniProt

complete

part_of

GO:0032153

cell division site

PMID:12565827[5]

ECO:0000314

direct assay evidence used in manual assertion

C

Seeded From UniProt

complete

part_of

GO:0030659

cytoplasmic vesicle membrane

PMID:12565827[5]

ECO:0000314

direct assay evidence used in manual assertion

C

Seeded From UniProt

complete

involved_in

GO:0016192

vesicle-mediated transport

PMID:12565827[5]

ECO:0000315

mutant phenotype evidence used in manual assertion

P

Seeded From UniProt

complete

involved_in

GO:0006886

intracellular protein transport

GO_REF:0000051

ECO:0000303

author statement without traceable support used in manual assertion

P

Seeded From UniProt

complete

part_of

GO:0005794

Golgi apparatus

PMID:16823372[6]

ECO:0007005

high throughput direct assay evidence used in manual assertion

C

Seeded From UniProt

complete

part_of

GO:0005783

endoplasmic reticulum

PMID:16823372[6]

ECO:0007005

high throughput direct assay evidence used in manual assertion

C

Seeded From UniProt

complete

part_of

GO:0005737

cytoplasm

PMID:16823372[6]

ECO:0007005

high throughput direct assay evidence used in manual assertion

C

Seeded From UniProt

complete

enables

GO:0005484

SNAP receptor activity

GO_REF:0000050

ECO:0000255

match to sequence model evidence used in manual assertion

Pfam:PF00957

F

Seeded From UniProt

complete

involved_in

GO:0061025

membrane fusion

GO_REF:0000108

ECO:0000364

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

GO:0005484

P

Seeded From UniProt

complete

part_of

GO:0016021

integral component of membrane

GO_REF:0000002

ECO:0000256

match to sequence model evidence used in automatic assertion

InterPro:IPR001388

C

Seeded From UniProt

complete

involved_in

GO:0016192

vesicle-mediated transport

GO_REF:0000002

ECO:0000256

match to sequence model evidence used in automatic assertion

InterPro:IPR001388

P

Seeded From UniProt

complete

part_of

GO:0016021

integral component of membrane

GO_REF:0000037

ECO:0000322

imported manually asserted information used in automatic assertion

UniProtKB-KW:KW-0812

C

Seeded From UniProt

complete

part_of

GO:0016020

membrane

GO_REF:0000037
GO_REF:0000039

ECO:0000322

imported manually asserted information used in automatic assertion

UniProtKB-KW:KW-0472
UniProtKB-SubCell:SL-0162

C

Seeded From UniProt

complete

Notes

References

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

  1. 1.0 1.1 Wang, N et al. (2016) Roles of the TRAPP-II Complex and the Exocyst in Membrane Deposition during Fission Yeast Cytokinesis. PLoS Biol. 14 e1002437 PubMed GONUTS page
  2. Maeda, Y et al. (2009) The Schizosaccharomyces pombe syntaxin 1 homolog, Psy1, is essential in the development of the forespore membrane. Biosci. Biotechnol. Biochem. 73 339-45 PubMed GONUTS page
  3. Imada, K & Nakamura, T (2016) The exocytic Rabs Ypt3 and Ypt2 regulate the early step of biogenesis of the spore plasma membrane in fission yeast. Mol. Biol. Cell 27 3317-3328 PubMed GONUTS page
  4. Snaith, HA et al. (2011) Characterization of Mug33 reveals complementary roles for actin cable-dependent transport and exocyst regulators in fission yeast exocytosis. J. Cell. Sci. 124 2187-99 PubMed GONUTS page
  5. 5.0 5.1 5.2 5.3 Edamatsu, M & Toyoshima, YY (2003) Fission yeast synaptobrevin is involved in cytokinesis and cell elongation. Biochem. Biophys. Res. Commun. 301 641-5 PubMed GONUTS page
  6. 6.0 6.1 6.2 Matsuyama, A et al. (2006) ORFeome cloning and global analysis of protein localization in the fission yeast Schizosaccharomyces pombe. Nat. Biotechnol. 24 841-7 PubMed GONUTS page