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Last updated: 2016/12/4

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ACVR2A rabbit monoclonal antibody

  • Catalog # : H00000092-K
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  • Specification
  • Product Description:
  • Rabbit monoclonal antibody raised against a human ACVR2A peptide using ARM Technology.
  • Immunogen:
  • A synthetic peptide of human ACVR2A 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 ACVR2A 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:
  • 92
  • Gene Name:
  • ACVR2A
  • Gene Alias:
  • ACTRII,ACVR2
  • Gene Description:
  • activin A receptor, type IIA
  • Gene Summary:
  • This gene encodes activin A type II receptor. Activins are dimeric growth and differentiation factors which belong to the transforming growth factor-beta (TGF-beta) superfamily of structurally related signaling proteins. Activins signal through a heteromeric complex of receptor serine kinases which include at least two type I (I and IB) and two type II (II and IIB) receptors. These receptors are all transmembrane proteins, composed of a ligand-binding extracellular domain with cysteine-rich region, a transmembrane domain, and a cytoplasmic domain with predicted serine/threonine specificity. Type I receptors are essential for signaling; and type II receptors are required for binding ligands and for expression of type I receptors. Type I and II receptors form a stable complex after ligand binding, resulting in phosphorylation of type I receptors by type II receptors. Type II receptors are considered to be constitutively active kinases. [provided by RefSeq
  • Other Designations:
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