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    ARB1 ATP-binding cassette family ATPase ARB1 [ Saccharomyces cerevisiae S288C ]

    Gene ID: 856758, updated on 9-Dec-2024

    Summary

    Official Symbol
    ARB1
    Official Full Name
    ATP-binding cassette family ATPase ARB1
    Primary source
    SGD:S000000838
    Locus tag
    YER036C
    See related
    AllianceGenome:SGD:S000000838; FungiDB:YER036C; VEuPathDB:YER036C
    Gene type
    protein coding
    RefSeq status
    REVIEWED
    Organism
    Saccharomyces cerevisiae S288C (strain: S288C)
    Lineage
    Eukaryota; Fungi; Dikarya; Ascomycota; Saccharomycotina; Saccharomycetes; Saccharomycetales; Saccharomycetaceae; Saccharomyces
    Summary
    Enables ATP hydrolysis activity. Involved in ribosomal small subunit export from nucleus. Acts upstream of or within protein unfolding. Located in nucleus. Orthologous to human ABCF2-H2BK1 (ABCF2-H2BK1 readthrough) and ABCF2 (ATP binding cassette subfamily F member 2). [provided by Alliance of Genome Resources, Dec 2024]
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    Genomic context

    See ARB1 in Genome Data Viewer
    Location:
    chromosome: V
    Exon count:
    1
    Sequence:
    Chromosome: V; NC_001137.3 (223367..225199, complement)

    Chromosome V - NC_001137.3Genomic Context describing neighboring genes Neighboring gene uncharacterized protein Neighboring gene Edc2p Neighboring gene bifunctional nucleotidase/lysophosphatidic acid phosphatase Neighboring gene Smc5-Smc6 complex subunit KRE29

    Bibliography

    Interactions

    Products Interactant Other Gene Complex Source Pubs Description

    General gene information

    Gene Ontology Provided by SGD

    Function Evidence Code Pubs
    enables ATP binding IBA
    Inferred from Biological aspect of Ancestor
    more info
     
    enables ATP binding IEA
    Inferred from Electronic Annotation
    more info
     
    enables ATP hydrolysis activity IEA
    Inferred from Electronic Annotation
    more info
     
    enables ATP hydrolysis activity IMP
    Inferred from Mutant Phenotype
    more info
    PubMed 
    enables hydrolase activity IEA
    Inferred from Electronic Annotation
    more info
     
    Process Evidence Code Pubs
    acts_upstream_of_or_within protein unfolding IMP
    Inferred from Mutant Phenotype
    more info
    PubMed 
    involved_in ribosomal small subunit export from nucleus IMP
    Inferred from Mutant Phenotype
    more info
    PubMed 
    involved_in ribosome biogenesis IMP
    Inferred from Mutant Phenotype
    more info
    PubMed 
    Component Evidence Code Pubs
    located_in cytoplasm HDA PubMed 
    located_in cytoplasm IEA
    Inferred from Electronic Annotation
    more info
     
    located_in nucleus IDA
    Inferred from Direct Assay
    more info
    PubMed 
    located_in nucleus IEA
    Inferred from Electronic Annotation
    more info
     

    General protein information

    Preferred Names
    ATP-binding cassette family ATPase ARB1
    NP_010953.1
    • ATPase of the ATP-binding cassette (ABC) family; involved in 40S and 60S ribosome biogenesis, has similarity to Gcn20p; important for disaggregation of ordered and disordered aggregates; shuttles from nucleus to cytoplasm, physically interacts with Tif6p, Lsg1p; human homolog ABCF2 can complement yeast ARB1 mutant

    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_001137.3 Reference assembly

      Range
      223367..225199 complement
      Download
      GenBank, FASTA, Sequence Viewer (Graphics)

    mRNA and Protein(s)

    1. NM_001178927.1NP_010953.1  TPA: ATP-binding cassette family ATPase ARB1 [Saccharomyces cerevisiae S288C]

      See identical proteins and their annotated locations for NP_010953.1

      Status: REVIEWED

      UniProtKB/Swiss-Prot
      D3DLT5, P40024
      UniProtKB/TrEMBL
      A6ZQY5, B3LS48, B5VHH1, C8Z738, G2WCR9, N1P4S7
      Conserved Domains (1) summary
      COG0488
      Location:79601
      Uup; ATPase components of ABC transporters with duplicated ATPase domains [General function prediction only]