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Recombinant Human Rab GDP dissociation inhibitor beta (GDI2)

Enhance your research with our premium Recombinant Human GDI2 protein, also known as Rab GDP dissociation inhibitor beta (Rab GDI beta). GDI2 plays a critical role in the regulation of vesicular transport by modulating the GDP/GTP exchange reaction of Rab proteins, thereby controlling their membrane cycling between the cytosol and membranes. Its importance in cellular trafficking and membrane dynamics makes GDI2 an essential component for various research applications. Our Recombinant Human GDI2 protein is expressed in a yeast system, ensuring proper folding and post-translational modifications. The full-length protein sequence (1-445aa) is N-terminal 6xHis-tagged for efficient purification while preserving native structure and function. With a purity greater than 90% as determined by SDS-PAGE, our GDI2 protein guarantees consistent and reliable results in your experiments. Available in both liquid and lyophilized powder forms, our Recombinant Human GDI2 protein is ready to support your research goals.

ACP03887

Enhance your research with our premium Recombinant Human GDI2 protein, also known as Rab GDP dissociation inhibitor beta (Rab GDI beta). GDI2 plays a critical role in the regulation of vesicular transport by modulating the GDP/GTP exchange reaction of Rab proteins, thereby controlling their membrane cycling between the cytosol and membranes. Its importance in cellular trafficking and membrane dynamics makes GDI2 an essential component for various research applications.
Our Recombinant Human GDI2 protein is expressed in a yeast system, ensuring proper folding and post-translational modifications. The full-length protein sequence (1-445aa) is N-terminal 6xHis-tagged for efficient purification while preserving native structure and function. With a purity greater than 90% as determined by SDS-PAGE, our GDI2 protein guarantees consistent and reliable results in your experiments. Available in both liquid and lyophilized powder forms, our Recombinant Human GDI2 protein is ready to support your research goals.

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Specifications


Cat.No ACP03887 Target NameGDI2
Target SynonymsGDI-2; GDI2; GDIB_HUMAN; GDP dissociation inhibitor 2; Guanosine diphosphate dissociation inhibitor 2; Rab GDI beta; Rab GDP dissociation inhibitor beta; RABGDIBFormLiquid or Lyophilized powder
Expression SystemYeastExpression Range1-445aa
Mol Weight52.7 kDaProtein LengthFull length
PurityGreater than 90% as determined by 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 IDP50395
Background Information
  • Uniprot Id

    P50395

  • Target Species

    Human

  • Target Name

    GDI2

  • Target Full Name

    Rab GDP dissociation inhibitor beta

  • Target Function

    Regulates the GDP/GTP exchange reaction of most Rab proteins by inhibiting the dissociation of GDP from them, and the subsequent binding of GTP to them.

  • Target Subcellular Location

    Cytoplasm. Membrane; Peripheral membrane protein.

  • Target Protein Families

    Rab GDI family

  • Target Tissue Specificity

    Ubiquitous.

  • Target Research Area

    Signal Transduction

  • Target Synonyms

    GDI-2; GDI2; GDIB_HUMAN; GDP dissociation inhibitor 2; Guanosine diphosphate dissociation inhibitor 2; Rab GDI beta; Rab GDP dissociation inhibitor beta; RABGDIB

  • Target Background

    GDP dissociation inhibitors are proteins that regulate the GDP-GTP exchange reaction of members of the rab family, small GTP-binding proteins of the ras superfamily, that are involved in vesicular trafficking of molecules between cellular organelles. GDIs slow the rate of dissociation of GDP from rab proteins and release GDP from membrane-bound rabs. GDI2 is ubiquitously expressed. The GDI2 gene contains many repetitive elements indicating that it may be prone to inversion/deletion rearrangements. Alternative splicing results in multiple transcript variants encoding distinct isoforms.

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