KLF14, CT (KLF14, BTEB5, Krueppel-like factor 14, Basic transcription element-binding protein 5, Transcription factor BTEB5)

  • Catalog number
    MBS643357
  • Price
    Please ask
  • Size
    0.2 mL
  • Products_type
    Antibody
  • Products_short_name
    [KLF14]
  • Products_name_syn
    [Anti -KLF14, CT (KLF14, BTEB5, Krueppel-like factor 14, Basic transcription element-binding protein 5, Transcription factor BTEB5)]
  • Other_names
    [Krueppel-like factor 14; Krueppel-like factor 14; Krueppel-like factor 14; BTE-binding protein 5; transcription factor BTEB5; basic transcription element-binding protein 5; Kruppel-like factor 14; Basic transcription element-binding protein 5; BTE-binding protein 5; Transcription factor BTEB5]
  • Other_gene_names
    [KLF14; KLF14; BTEB5; BTEB5; BTE-binding protein 5]
  • Clonality
    Polyclonal
  • Reactivity
    Human, Mouse
  • Specificity
    Human, mouse
  • Purity
    Affinity Purified Purified by Protein A affinity chromatography.
  • Form
    Supplied as a liquid in PBS, pH 7.2, 0.09% sodium azide.
  • Storage_stability
    May be stored at 4 degree C for short-term only. Aliquot to avoid repeated freezing and thawing. Store at -20 degree C. Aliquots are stable for 12 months. For maximum recovery of product, centrifuge the original vial after thawing and prior to removing the cap.
  • Tested_application
    ELISA (EL/EIA), Western Blot (WB), Flow Cytometry (FC/FACS)
  • Description
    Basic proteins pH>7 are often produced recombinant and shouldn’t be precipitated by formic acid buffer. Aplha, transcription related growth factors and stimulating factors or repressing nuclear factors are complex subunits of proteins involved in cell differentiation. Complex subunit associated factors are involved in hybridoma growth, Eosinohils, eritroid proliferation and derived from promotor binding stimulating subunits on the DNA binding complex. NFKB 105 subunit for example is a polypetide gene enhancer of genes in B cells. The activation of transcription factor subunits is the first step of gene expression, in which a particular segment of DNA is copied into RNA (mRNA) by the enzyme RNA polymerases. Transcription factors, unites and elongations can be RNA and DNA nucleic acids, base pairs of nucleotides . Converting from DNA to RNA is made by enzymatic reactions. During transcription, a DNA sequence is read by an RNA polymerase, which produces a complementary, anti-parallel RNA strand called a primary transcript. Transcriptions are key functions in signal transduction pathways. Signaling ligand binding transcription factors play an important role in transduction cascades.
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