Recombinant Lake Victoria marburgvirus Envelope glycoprotein (GP), partial

CAT:
399-GTR04826109
Size:
10 µg
  • Availability: 24/48H Stock Items & 2 to 6 Weeks non Stock Items.
  • Dry Ice Shipment: No

Recombinant Lake Victoria marburgvirus Envelope glycoprotein (GP), partial

  • Product Name Alternative:

    GP1,2 (GP) (Virion spike glycoprotein)

  • Abbreviation:

    Recombinant Lake Victoria marburgvirus GP protein, partial

  • Gene Name:

    GP

  • UniProt:

    P35254

  • Expression Region:

    436-681aa

  • Organism:

    Lake Victoria marburgvirus (strain Popp-67) (MARV) (Marburg virus (strain West Germany/Popp/1967) )

  • Target Sequence:

    SILWREGDMFPFLDGLINAPIDFDPVPNTKTIFDESSSSGASAEEDQHASPNISLTLSYFPNINENTAYSGENENDCDAELRIWSVQEDDLAAGLSWIPFFGPGIEGLYTAGLIKNQNNLVCRLRRLANQTAKSLELLLRVTTEERTFSLINRHAIDFLLTRWGGTCKVLGPDCCIGIEDLSRNISEQIDQIKKDEQKEGTGWGLGGKWWTSDWGVLTNLGILLLLSIAVLIALSCICRIFTKYIG

  • Tag:

    N-terminal 10xHis-tagged and C-terminal Myc-tagged

  • Type:

    Developed Protein

  • Source:

    E.coli

  • Field of Research:

    Signal Transduction

  • Relevance:

    GP1 is responsible for binding to the receptor on target cells. Interacts with CD209/DC-SIGN and CLEC4M/DC-SIGNR which act as cofactors for virus entry into the host cell. Binding to CD209 and CLEC4M, which are respectively found on dendritic cells, and on endothelial cells of liver sinusoids and lymph node sinuses, facilitate infection of macrophages and endothelial cells. These interactions not only facilitate virus cell entry, but also allow capture of viral particles by DCs and subsequent transmission to susceptible cells without DCs infection.GP2 acts as a class I viral fusion protein. Under the current model, the protein has at least 3 conformational states: pre-fusion native state, pre-hairpin intermediate state, and post-fusion hairpin state. During viral and target cell membrane fusion, the coiled coil regions assume a trimer-of-hairpins structure, positioning the fusion peptide in close proximity to the C-terminal region of the ectodomain. The formation of this structure appears to drive apposition and subsequent fusion of viral and target cell membranes. Responsible for penetration of the virus into the cell cytoplasm by mediating the fusion of the membrane of the endocytosed virus particle with the endosomal membrane. Low pH in endosomes induces an irreversible conformational change in GP2, releasing the fusion hydrophobic peptide.

  • Endotoxin:

    Not test

  • Purity:

    Greater than 85% as determined by SDS-PAGE.

  • Activity:

    Not Test

  • Form:

    Liquid or Lyophilized powder

  • Buffer:

    If the delivery form is liquid, the default storage buffer is Tris/PBS-based buffer, 5%-50% glycerol. If the delivery form is lyophilized powder, the buffer before lyophilization is Tris/PBS-based buffer, 6% Trehalose, pH 8.0.

  • Reconstitution:

    We recommend that this vial be briefly centrifuged prior to opening to bring the contents to the bottom. Please reconstitute protein in deionized sterile water to a concentration of 0.1-1.0 mg/mL.We recommend to add 5-50% of glycerol (final concentration) and aliquot for long-term storage at -20°C/-80°C. Our default final concentration of glycerol is 50%. Customers could use it as reference.

  • Function:

    GP1 is responsible for binding to the receptor (s) on target cells. Interacts with CD209/DC-SIGN and CLEC4M/DC-SIGNR which act as cofactors for virus entry into the host cell. Binding to CD209 and CLEC4M, which are respectively found on dendritic cells (DCs), and on endothelial cells of liver sinusoids and lymph node sinuses, facilitate infection of macrophages and endothelial cells. These interactions not only facilitate virus cell entry, but also allow capture of viral particles by DCs and subsequent transmission to susceptible cells without DCs infection (trans infection) (By similarity) .

  • Molecular Weight:

    34.3 kDa

  • References & Citations:

    "The complete nucleotide sequence of the Popp (1967) strain of Marburg virus: a comparison with the Musoke (1980) strain." Bukreyev A.A., Volchkov V.E., Blinov V.M., Dryga S.A., Netesov S.V. Arch. Virol. 140:1589-1600 (1995)

  • Storage Conditions:

    The shelf life is related to many factors, storage state, buffer ingredients, storage temperature and the stability of the protein itself. Generally, the shelf life of liquid form is 6 months at -20°C/-80°C. The shelf life of lyophilized form is 12 months at -20°C/-80°C.

  • Protein Length:

    Partial