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LOC106058006 UDP-N-acetylglucosamine transferase subunit ALG13 homolog [ Biomphalaria glabrata ]

Gene ID: 106058006, updated on 26-Mar-2024

Summary

Gene symbol
LOC106058006
Gene description
UDP-N-acetylglucosamine transferase subunit ALG13 homolog
See related
VectorBase:BGLAX_033822
Gene type
protein coding
RefSeq status
MODEL
Organism
Biomphalaria glabrata
Lineage
Eukaryota; Metazoa; Spiralia; Lophotrochozoa; Mollusca; Gastropoda; Heterobranchia; Euthyneura; Panpulmonata; Hygrophila; Lymnaeoidea; Planorbidae; Biomphalaria
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Genomic context

See LOC106058006 in Genome Data Viewer
Location:
chromosome: 10
Exon count:
2
Annotation release Status Assembly Chr Location
RS_2023_05 current xgBioGlab47.1 (GCF_947242115.1) 10 NC_074720.1 (28620509..28622652, complement)
100 previous assembly ASM45736v1 (GCF_000457365.1) Unplaced Scaffold NW_013198240.1 (27293..29473, complement)

Chromosome 10 - NC_074720.1Genomic Context describing neighboring genes Neighboring gene RNA cytidine acetyltransferase-like Neighboring gene MAP kinase-activating death domain protein-like Neighboring gene uncharacterized LOC106058000 Neighboring gene transmembrane protein 101-like Neighboring gene oxidoreductase HTATIP2-like

Genomic regions, transcripts, and products

General protein information

Preferred Names
UDP-N-acetylglucosamine transferase subunit ALG13 homolog

NCBI Reference Sequences (RefSeq)

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RefSeqs of Annotated Genomes: GCF_947242115.1-RS_2023_05

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

Reference xgBioGlab47.1

Genomic

  1. NC_074720.1 Reference xgBioGlab47.1

    Range
    28620509..28622652 complement
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    GenBank, FASTA, Sequence Viewer (Graphics)

mRNA and Protein(s)

  1. XM_013215378.2XP_013070832.1  UDP-N-acetylglucosamine transferase subunit ALG13 homolog

    UniProtKB/TrEMBL
    A0A2C9JKP5
    Conserved Domains (1) summary
    cl10013
    Location:9153
    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 ...