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ITGB8 rabbit monoclonal antibody

  • Catalog # : H00003696-K
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  • Specification
  • Product Description:
  • Rabbit monoclonal antibody raised against a human ITGB8 peptide using ARM Technology.
  • Immunogen:
  • A synthetic peptide of human ITGB8 is used for rabbit immunization.
    Customer or Abnova will decide on the preferred peptide sequence.
  • Host:
  • Rabbit
  • Reactivity:
  • Human
  • Purification:
  • Protein A
  • Isotype:
  • IgG
  • Quality Control Testing:
  • Antibody reactive against human ITGB8 peptide by ELISA and mammalian transfected lysate by Western Blot.
  • Storage Buffer:
  • In 1x PBS, pH 7.4
  • Storage Instruction:
  • Store at -20°C or lower. Aliquot to avoid repeated freezing and thawing.
  • Note:
  • 1. Customer may provide cell or tissue lysate for antibody screening.
    2. Rabbit monoclonal antibody generated by ARM technology is amenable to antibody engineering including F(ab)2, IgG, scFv and different Fc and non-Fc conjugates per customer request.
  • Library Construction:
  • Non-fusion antibody library from rabbit spleen (ARM Technology).
  • Expression:
  • Overexpression vector and transfection into 293H cell line.
  • Deliverable:
  • Up to three rabbit IgG clones of 1 mg each will be delivered to customer.
  • Applications
  • ELISA
  • Application Image
  • Western Blot (Transfected lysate)
  • ELISA
  • Gene Information
  • Entrez GeneID:
  • 3696
  • GeneBank Accession#:
  • ITGB8
  • Gene Name:
  • ITGB8
  • Gene Alias:
  • -
  • Gene Description:
  • integrin, beta 8
  • Gene Summary:
  • This gene is a member of the integrin beta chain family and encodes a single-pass type I membrane protein with a VWFA domain and four cysteine-rich repeats. This protein noncovalently binds to an alpha subunit to form a heterodimeric integrin complex. In general, integrin complexes mediate cell-cell and cell-extracellular matrix interactions and this complex plays a role in human airway epithelial proliferation. Alternatively spliced variants which encode different protein isoforms have been described; however, not all variants have been fully characterized. [provided by RefSeq
  • Other Designations:
  • -
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