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ALG2 glycosyltransferase family 4 protein, putative alpha-1,3-mannosyltransferase ALG2 [ Bathycoccus prasinos ]

Gene ID: 19011973, updated on 18-Sep-2024

Summary

Gene symbol
ALG2
Gene description
glycosyltransferase family 4 protein, putative alpha-1,3-mannosyltransferase ALG2
Locus tag
Bathy14g01700
Gene type
protein coding
RNA name
glycosyltransferase family 4 protein, putative alpha-1,3-mannosyltransferase ALG2
RefSeq status
PROVISIONAL
Organism
Bathycoccus prasinos (strain: RCC 1105)
Lineage
Eukaryota; Viridiplantae; Chlorophyta; prasinophytes; Mamiellophyceae; Mamiellales; Bathycoccaceae; Bathycoccus
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Genomic context

See ALG2 in Genome Data Viewer
Location:
chromosome: 14
Exon count:
11
Sequence:
Chromosome: 14; NC_023995.1 (313966..315690, complement)

Chromosome 14 - NC_023995.1Genomic Context describing neighboring genes Neighboring gene hypothetical protein Neighboring gene DNA replication complex GINS protein PSF2 Neighboring gene hypothetical protein Neighboring gene hypothetical protein

General protein information

Names
glycosyltransferase family 4 protein, putative alpha-1,3-mannosyltransferase ALG2

NCBI Reference Sequences (RefSeq)

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Genome Annotation

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

Reference assembly

Genomic

  1. NC_023995.1 Reference assembly

    Range
    313966..315690 complement
    Download
    GenBank, FASTA, Sequence Viewer (Graphics)

mRNA and Protein(s)

  1. XM_007509062.1XP_007509124.1  glycosyltransferase family 4 protein, putative alpha-1,3-mannosyltransferase ALG2 [Bathycoccus prasinos]

    See identical proteins and their annotated locations for XP_007509124.1

    Status: PROVISIONAL

    UniProtKB/TrEMBL
    K8ENE5
    Conserved Domains (2) summary
    COG0438
    Location:4407
    RfaB; Glycosyltransferase involved in cell wall bisynthesis [Cell wall/membrane/envelope biogenesis]
    cl10013
    Location:4396
    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 ...