Reviewed,
UniProtKB/Swiss-Prot O14199 (ALG14_SCHPO)
Last modified
November 24, 2009.
Version 53.
History...
Clusters with 100%,
90%,
50% identity |
Documents (2) |
Third-party data |
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Names and origin
| Protein names | Recommended name: UDP-N-acetylglucosamine transferase subunit alg14 Alternative name(s): Asparagine-linked glycosylation protein 14 | ||||
| Gene names |
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| Organism | Schizosaccharomyces pombe (Fission yeast) [Complete proteome] | ||||
| Taxonomic identifier | 4896 [NCBI] | ||||
| Taxonomic lineage | Eukaryota › Fungi › Dikarya › Ascomycota › Taphrinomycotina › Schizosaccharomycetes › Schizosaccharomycetales › Schizosaccharomycetaceae › Schizosaccharomyces |
Protein attributes
| Sequence length | 210 AA. |
| Sequence status | Complete. |
| Sequence processing | The displayed sequence is not processed. |
| Protein existence | Evidence at transcript level. |
General annotation (Comments)
| Function | Involved in protein N-glycosylation. Essential for the second step of the dolichol-linked oligosaccharide pathway. Anchors the catalytic subunit alg13 to the ER By similarity. |
| Subunit structure | Heterodimer with alg13 to form a functional enzyme By similarity. |
| Subcellular location | Endoplasmic reticulum membrane; Single-pass membrane protein By similarity. |
| Sequence similarities | Belongs to the ALG14 family. |
Ontologies
| Keywords | |
|---|---|
| Cellular component | Endoplasmic reticulum Membrane |
| Domain | Transmembrane |
| Technical term | Complete proteome |
| Gene Ontology (GO) | |
| Cellular component | endoplasmic reticulum Inferred from direct assay. Source: GeneDB_SPombe integral to membraneInferred from electronic annotation. Source: UniProtKB-SubCell |
| Complete GO annotation... | |
Sequence annotation (Features)
| Feature key | Position(s) | Length | Description | Graphical view | Feature identifier | ||||
Molecule processing | |||||||||
|---|---|---|---|---|---|---|---|---|---|
| Chain | 1 – 210 | 210 | UDP-N-acetylglucosamine transferase subunit alg14 | PRO_0000123816 | |||||
Regions | |||||||||
| Topological domain | 1 – 3 | 3 | Lumenal Potential | ||||||
| Transmembrane | 4 – 21 | 18 | Potential | ||||||
| Topological domain | 22 – 210 | 189 | Cytoplasmic Potential | ||||||
Sequences
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References
| [1] | "The genome sequence of Schizosaccharomyces pombe." Wood V., Gwilliam R., Rajandream M.A., Lyne M.H., Lyne R., Stewart A., Sgouros J.G., Peat N., Hayles J., Baker S.G., Basham D., Bowman S., Brooks K., Brown D., Brown S., Chillingworth T., Churcher C.M., Collins M. Nurse P.Nature 415:871-880(2002) [PubMed: 11859360] [Abstract] Cited for: NUCLEOTIDE SEQUENCE [LARGE SCALE GENOMIC DNA]. Strain: ATCC 38366 / 972. |
Cross-references
Sequence databases | |
|---|---|
| CU329670 Genomic DNA. Translation: CAB10854.1. | |
| PIR | T38960. |
| RefSeq | NP_593363.1. |
3D structure databases | |
| ModBase | Search... |
Protein-protein interaction databases | |
| STRING | O14199. |
Protein family/group databases | |
| CAZy | GT1. Glycosyltransferase Family 1. |
Genome annotation databases | |
| GeneID | 2541499. |
| GenomeReviews | Gene locus alg14 in contig CU329670_GR. |
| KEGG | spo:SPAC5D6.06c. |
| NMPDR | fig|4896.1.peg.3333. |
Organism-specific databases | |
| GeneDB_Spombe | SPAC5D6.06c. |
Phylogenomic databases | |
| OMA | SRIVFVE |
| OrthoDB | EOG9GF4XZ |
Gene expression databases | |
| ArrayExpress | O14199. |
Family and domain databases | |
| InterPro | IPR013969. Oligosacch_biosynth_Alg14. [Graphical view] |
| PANTHER | PTHR12154. Oligosacch_biosynth_Alg14. 1 hit. |
| Pfam | PF08660. Alg14. 1 hit. [Graphical view] |
| ProtoNet | Search... |
Entry information
| Entry name | ALG14_SCHPO | ||||||||
| Accession | Primary (citable) accession number: O14199 | ||||||||
| Entry history |
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| Entry status | Reviewed (UniProtKB/Swiss-Prot) | ||||||||
| Annotation project | FPAP (Fungal Proteome Annotation Project) | ||||||||
Relevant documents
| Schizosaccharomyces pombe Schizosaccharomyces pombe: entries and gene names |
| SIMILARITY comments Index of protein domains and families |

Clusters with


