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zgc:92907 ALG13 UDP-N-acetylglucosaminyltransferase subunit [ Notothenia coriiceps (black rockcod) ]

Gene ID: 104960679, updated on 12-Mar-2024

Summary

Gene symbol
zgc:92907
Gene description
ALG13 UDP-N-acetylglucosaminyltransferase subunit
Gene type
protein coding
RefSeq status
MODEL
Organism
Notothenia coriiceps
Lineage
Eukaryota; Metazoa; Chordata; Craniata; Vertebrata; Euteleostomi; Actinopterygii; Neopterygii; Teleostei; Neoteleostei; Acanthomorphata; Eupercaria; Perciformes; Notothenioidei; Nototheniidae; Notothenia
Also known as
alg13
Orthologs
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Genomic context

Location:
chromosome: Un
Exon count:
3
Annotation release Status Assembly Chr Location
100 current NC01 (GCF_000735185.1) Unplaced Scaffold NW_011364855.1 (109556..113120, complement)

NW_011364855.1Genomic Context describing neighboring genes Neighboring gene heparan sulfate 6-O-sulfotransferase 2 Neighboring gene muscleblind-like splicing regulator 3 Neighboring gene RAP2C, member of RAS oncogene family Neighboring gene sestrin 4

Genomic regions, transcripts, and products

Genomic Sequence:
NW_011364855.1 Unplaced Scaffold Reference NC01 Primary Assembly

General protein information

Preferred Names
putative bifunctional UDP-N-acetylglucosamine transferase and deubiquitinase ALG13

NCBI Reference Sequences (RefSeq)

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RefSeqs of Annotated Genomes: Notothenia coriiceps Annotation Release 100 details...Open this link in a new tab

The following sections contain reference sequences that belong to a specific genome build. Explain

Reference NC01 Primary Assembly

Genomic

  1. NW_011364855.1 Reference NC01 Primary Assembly

    Range
    109556..113120 complement
    Download
    GenBank, FASTA, Sequence Viewer (Graphics)

mRNA and Protein(s)

  1. XM_010788828.1XP_010787130.1  putative bifunctional UDP-N-acetylglucosamine transferase and deubiquitinase ALG13

    UniProtKB/TrEMBL
    A0A6I9PHG8
    Conserved Domains (1) summary
    cl10013
    Location:3117
    Glycosyltransferase_GTB_type; Glycosyltransferases catalyze the transfer of sugar moieties from activated donor molecules to specific acceptor molecules, forming glycosidic bonds. The acceptor molecule can be a lipid, a protein, a heterocyclic compound, or another carbohydrate ...