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Recombinant Human RecQ-mediated genome instability protein 1 (RMI1)

ACP11257

Number
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High Purity LevelsPrecision and ReliabilityCustomization Options

Specifications


Cat.No ACP11257 Target NameRMI1
FormLyophilized powderExpression SystemCustom Production. Please inquire and provide the desire expression system.
Expression Range1-625Protein LengthFull length protein
Purity>85% (SDS-PAGE)Storage Buffer5%-50% glycerol. Lyophilized powder form: the buffer before lyophilization is Tris/PBS-based buffer, 6% Trehalose, Liquid form: default storage buffer is Tris/PBS-based buffer, pH 8.0.

Immunogen Information


Target SpeciesHumanUniprot IDQ9H9A7
Background Information
  • Uniprot Id

    Q9H9A7

  • Target Species

    Human

  • Target Name

    RMI1

  • Target Full Name

    RecQ-mediated genome instability protein 1

  • Target Function

    Essential component of the RMI complex, a complex that plays an important role in the processing of homologous recombination intermediates to limit DNA crossover formation in cells. Promotes TOP3A binding to double Holliday junctions (DHJ) and hence stimulates TOP3A-mediated dissolution. Required for BLM phosphorylation during mitosis. Within the BLM complex, required for BLM and TOP3A stability.

  • Target Subcellular Location

    Nucleus. Note=Forms foci in response to DNA damage.

  • Target Protein Families

    RMI1 family

  • Target Synonyms

    BLAP75; BLM associated polypeptide 75 kDa; BLM associated protein 75 kDa; BLM-associated protein of 75 kDa; C9orf76; FAAP75; FLJ12888; Homolog of yeast RecQ mediated genome instability 1; RecQ mediated genome instability 1; RecQ-mediated genome instability protein 1; Rmi1; RMI1 homolog; RMI1 RecQ mediated genome instability 1 homolog; RMI1_HUMAN; RP11-346I8

  • Target Background

    Predicted to enable nucleotide binding activity. Predicted to be involved in double-strand break repair via homologous recombination and resolution of meiotic recombination intermediates. Predicted to act upstream of or within glucose homeostasis; reduction of food intake in response to dietary excess; and response to glucose. Located in nuclear body.

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