• DRAMP ID

    • DRAMP04688
    • Peptide Name

    • Glucan endo-1,3-beta-glucosidase
    • Source

    • Vitis rotundifolia (Muscadine grape)
    • Family

    • Belongs to the glycosyl hydrolase 17 family
    • Gene

    • Not found
    • Sequence

    • NIFNAISAAGLGNQIKVSTAIDTGVLGTSYPPSK
    • Sequence Length

    • 34
    • Protein Existence

    • Protein level
    • Biological Activity

    • Antimicrobial, Antifungal
    • Target Organism

    • No MICs found in DRAMP database
    • Hemolytic Activity

      • No hemolysis information or data found in the reference(s) presented in this entry
    • Cytotoxicity

      • Not included yet
    • Binding Target

    • Not found
    • Linear/Cyclic

    • Not included yet
    • N-terminal Modification

    • Not included yet
    • C-terminal Modification

    • Not included yet
    • Nonterminal Modifications and Unusual Amino Acids

    • Not included yet
    • Stereochemistry

    • Not included yet
    • Structure

    • Not found
    • Structure Description

    • Not found
    • Helical Wheel Diagram

    • DRAMP04688 helical wheel diagram
    • PDB ID

    • None
    • Predicted Structure

    • There is no predicted structure for DRAMP04688.
    • Formula

    • C151H246N40O49
    • Absent Amino Acids

    • CEHMRW
    • Common Amino Acids

    • AGIS
    • Mass

    • 3405.85
    • PI

    • 8.5
    • Basic Residues

    • 2
    • Acidic Residues

    • 1
    • Hydrophobic Residues

    • 13
    • Net Charge

    • +1
    • Boman Index

    • -1515
    • Hydrophobicity

    • 0.215
    • Aliphatic Index

    • 97.65
    • Half Life

      • Mammalian:1.4 hour
      • Yeast:3 min
      • E.coli:>10 hour
    • Extinction Coefficient Cystines

    • 1490
    • Absorbance 280nm

    • 45.15
    • Polar Residues

    • 15

DRAMP04688

DRAMP04688 chydropathy plot
    • Function

    • Is thought to be an important plant defense-related product against fungal pathogens.
    • Miscellaneous

    • On the 2D-gel the determined pI of this protein is
  • ·Literature 1
    • Title

    • Proteomics approach to identify unique xylem sap proteins in Pierce's disease-tolerant Vitis species.
    • Reference

    • Appl Biochem Biotechnol. 2010 Mar;160(3):932-944.
    • Author

    • Basha SM, Mazhar H, Vasanthaiah HK.