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CCL3L1 Protein

CCL3L1 Origin: Human Host: Escherichia coli (E. coli) Recombinant >97 % as determined by SDS-PAGE and HPLC. Func Active
Catalog No. ABIN2830056
  • Target See all CCL3L1 Proteins
    CCL3L1 (Chemokine (C-C Motif) Ligand 3-Like 1 (CCL3L1))
    Protein Type
    Recombinant
    Biological Activity
    Active
    Origin
    • 8
    • 2
    Human
    Source
    • 6
    • 2
    • 1
    • 1
    Escherichia coli (E. coli)
    Application
    Functional Studies (Func)
    Sequence
    APLAADTPTA CCFSYTSRQI PQNFIADYFE TSSQCSKPSV IFLTKRGRQV CADPSEEWVQ KYVSDLELSA
    Characteristics
    Biological Activity: Fully biologically active when compared to standard. The biological activity determined by a chemotaxis bioassay using human monocytes is in a concentration range of 1.0-10 ng/mL.
    Purity
    >97 % as determined by SDS-PAGE and HPLC.
    Sterility
    0.2 μm filtered
    Top Product
    Discover our top product CCL3L1 Protein
  • Restrictions
    For Research Use only
  • Format
    Lyophilized
    Buffer
    PBS, pH 7.4
    Storage
    -20 °C
  • Target
    CCL3L1 (Chemokine (C-C Motif) Ligand 3-Like 1 (CCL3L1))
    Alternative Name
    CCL3L1 (CCL3L1 Products)
    Synonyms
    464.2 Protein, D17S1718 Protein, G0S19-2 Protein, LD78 Protein, LD78BETA Protein, MIP1AP Protein, SCYA3L Protein, SCYA3L1 Protein, C-C motif chemokine ligand 3 like 1 Protein, chemokine (C-C motif) ligand 3-like 1 Protein, CCL3L1 Protein
    Background
    Relevance: Chemotactic for lymphocytes and monocytes. Is a ligand for CCR1, CCR3 and CCR5. Is an inhibitor of HIV-1-infection. The processed form LD78-beta(3-70) shows a 20-fold to 30-fold higher chemotactic activity and is a very potent inhibitor of HIV-1-infection. LD78-beta(3-70) is also a ligand for CCR1, CCR3 and CCR5. {ECO:0000269|PubMed:10961862, ECO:0000269|PubMed:11449371}.
    Synonyms: G0/G1 switch regulatory protein 19-2 PAT 464.2, Small-inducible cytokine A3-like 1, Tonsillar lymphocyte LD78 beta protein
    Molecular Weight
    7.8 kDa
    UniProt
    P16619
    Pathways
    Cellular Response to Molecule of Bacterial Origin
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