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TGFB1 Protein (AA 30-278) (His-Avi Tag,Biotin)

TGFB1 Origin: Human Host: HEK-293 Cells Recombinant > 95 % as determined by Tris-Bis PAGE,> 95 % as determined by HPLC
Catalog No. ABIN7275129
  • Target See all TGFB1 Proteins
    TGFB1 (Transforming Growth Factor, beta 1 (TGFB1))
    Protein Type
    Recombinant
    Protein Characteristics
    AA 30-278
    Origin
    • 29
    • 7
    • 4
    • 4
    • 3
    • 3
    • 3
    • 2
    • 2
    • 2
    • 1
    • 1
    • 1
    • 1
    • 1
    • 1
    • 1
    • 1
    • 1
    Human
    Source
    • 28
    • 13
    • 10
    • 6
    • 3
    • 3
    • 1
    • 1
    HEK-293 Cells
    Purification tag / Conjugate
    This TGFB1 protein is labelled with His-Avi Tag,Biotin.
    Purpose
    Biotinylated Human LAP (TGF beta 1) Protein
    Sequence
    Leu30-Arg278 (C33S)
    Characteristics
    Recombinant Biotinylated Human LAP (TGF beta 1) Protein is expressed from HEK293 with His tag and Avi tag at the N-Terminus.It contains Leu30-Arg278(C33S).
    Purity
    > 95 % as determined by Tris-Bis PAGE,> 95 % as determined by HPLC
    Sterility
    0.22 μm filtered
    Endotoxin Level
    Less than 1EU per μg by the LAL method.
    Biological Activity Comment
    Immobilized Biotinylated Human LAP (TGF beta 1) , His Tag at 0.5μg/ml (100μl/Well) on the plate. Dose response curve for Human TGF-beta RII, hFc Tag with the EC50 of 23.8ng/ml determined by ELISA. See testing image for detail.
  • Restrictions
    For Research Use only
  • Format
    Lyophilized
    Reconstitution
    Centrifuge the tube before opening. Reconstituting to a concentration more than 100 μg/mL is recommended. Dissolve the lyophilized protein in distilled water.
    Buffer
    Lyophilized from 0.22μm filtered solution in PBS ( pH 7.4). Normally 8 % trehalose is added as protectant before lyophilization.
    Storage
    -20 °C,-80 °C
    Storage Comment
    -20 to -80°C for 12 months as supplied from date of receipt.,-80°C for 3-6 months after reconstitution.,2-8°C for 2-7 days after reconstitution.,Recommend to aliquot the protein into smaller quantities for optimal storage. Please minimize freeze-thaw cycles.
    Expiry Date
    12 months
  • Target
    TGFB1 (Transforming Growth Factor, beta 1 (TGFB1))
    Alternative Name
    LAP (TGF beta 1) (TGFB1 Products)
    Synonyms
    CED Protein, DPD1 Protein, LAP Protein, TGFB Protein, TGFbeta Protein, TGF-beta Protein, TGF-BETA-1 Protein, TGF-beta5 Protein, ced Protein, dpd1 Protein, lap Protein, tgf-beta Protein, tgfb Protein, tgfb5 Protein, tgfbeta Protein, TGF-beta1 Protein, TGFbeta1 Protein, Tgfb Protein, Tgfb-1 Protein, ai39657 Protein, tgfb1 Protein, wu:fb13a07 Protein, xx:ai39657 Protein, TGFB1 Protein, csd Protein, cdb1 Protein, cdg2 Protein, csd1 Protein, csd2 Protein, csd3 Protein, ebmd Protein, lcd1 Protein, bigh3 Protein, cdgg1 Protein, betaig-h3 Protein, TGFB4 Protein, transforming growth factor beta 1 Protein, transforming growth factor beta-1 Protein, transforming growth factor beta 1 L homeolog Protein, transforming growth factor, beta 1 Protein, transforming growth factor, beta 1a Protein, transforming growth factor beta induced L homeolog Protein, TGFB1 Protein, Tgfb1 Protein, tgfb1.L Protein, tgfb1a Protein, tgfbi.L Protein
    Background
    Latent TGF beta 1 cDNA encodes a 390 amino acid precursor that contains a 29 aa signal peptide and a 361 aa proprotein. A furin-like convertase processes the proprotein to generate an N-terminal 249 aa latency-associated peptide (LAP) and a C-terminal 112 aa mature TGF- beta 1. Disulfide-linked homodimers of LAP and TGF- beta 1 remain non-covalently associated after secretion, forming the small latent TGF- beta 1 complex.
    Molecular Weight
    31.4 kDa. Due to glycosylation, the protein migrates to 45-50 kDa based on Tris-Bis PAGE result.
    UniProt
    P01137
    Pathways
    EGFR Signaling Pathway, Dopaminergic Neurogenesis, Cellular Response to Molecule of Bacterial Origin, Glycosaminoglycan Metabolic Process, Regulation of Leukocyte Mediated Immunity, Regulation of Muscle Cell Differentiation, Positive Regulation of Immune Effector Process, Cell-Cell Junction Organization, Production of Molecular Mediator of Immune Response, Ribonucleoside Biosynthetic Process, Skeletal Muscle Fiber Development, Regulation of Carbohydrate Metabolic Process, Protein targeting to Nucleus, Autophagy, Cancer Immune Checkpoints
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