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    ipp1 inorganic pyrophosphatase [ Schizosaccharomyces pombe (fission yeast) ]

    Gene ID: 2542011, updated on 18-Sep-2024

    Summary

    Official Symbol
    ipp1
    Official Full Name
    inorganic pyrophosphatase
    Primary source
    PomBase:SPAC23C11.05
    Locus tag
    SPOM_SPAC23C11.05
    Gene type
    protein coding
    RefSeq status
    PROVISIONAL
    Organism
    Schizosaccharomyces pombe (strain: 972h-)
    Lineage
    Eukaryota; Fungi; Dikarya; Ascomycota; Taphrinomycotina; Schizosaccharomycetes; Schizosaccharomycetales; Schizosaccharomycetaceae; Schizosaccharomyces
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    Genomic context

    See ipp1 in Genome Data Viewer
    Location:
    chromosome: I
    Exon count:
    1
    Sequence:
    Chromosome: I; NC_003424.3 (2140502..2141698)

    Chromosome I - NC_003424.3Genomic Context describing neighboring genes Neighboring gene DNA kinase/phosphatase Pnk1 Neighboring gene ncRNA Neighboring gene ncRNA Neighboring gene ncRNA Neighboring gene hydrolase Neighboring gene ncRNA Neighboring gene ncRNA Neighboring gene ncRNA Neighboring gene ncRNA Neighboring gene uncharacterized protein

    Pathways from PubChem

    Interactions

    Products Interactant Other Gene Complex Source Pubs Description

    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_003424.3 Reference assembly

      Range
      2140502..2141698
      Download
      GenBank, FASTA, Sequence Viewer (Graphics)

    mRNA and Protein(s)

    1. NM_001019067.3NP_593636.1  inorganic pyrophosphatase [Schizosaccharomyces pombe]

      See identical proteins and their annotated locations for NP_593636.1

      Status: PROVISIONAL

      UniProtKB/Swiss-Prot
      P19117
      Conserved Domains (1) summary
      cl00217
      Location:2240
      pyrophosphatase; Inorganic pyrophosphatase. These enzymes hydrolyze inorganic pyrophosphate (PPi) to two molecules of orthophosphates (Pi). The reaction requires bivalent cations. The enzymes in general exist as homooligomers.