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Recombinant Human Scavenger receptor cysteine-rich type 1 protein M160 (CD163L1), Truncated

ACP01496

Number
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Specifications


Cat.No ACP01496 Target NameCD163L1
FormLiquid or Lyophilized powderExpression SystemE.coli
Expression Range48-469aaMol Weight54.1 kDa
Protein LengthPartialPurityGreater than 85% as determined by SDS-PAGE.
Storage Buffer5%-50% glycerol. Lyophilized powder form: the buffer before lyophilization is Tris/PBS-based buffer, 6% Trehalose, Liquid form: default storage buffer is Tris/PBS-based buffer, pH 8.0.

Immunogen Information


Target SpeciesHumanUniprot IDQ9NR16
Background Information
  • Uniprot Id

    Q9NR16

  • Target Species

    Human

  • Target Name

    CD163L1

  • Target Full Name

    Scavenger receptor cysteine-rich type 1 protein M160

  • Target Subcellular Location

    [Isoform 1]: Cell membrane; Single-pass type I membrane protein.; [Isoform 2]: Cell membrane; Single-pass type I membrane protein.; [Isoform 3]: Secreted.

  • Target Tissue Specificity

    Isoform 1 is highly expressed in the spleen, lymph nodes, thymus, and fetal liver and weakly expressed in bone marrow and no expression was found in peripheral blood leukocytes. Isoform 1 expression is restricted to the monocyte and macrophage cell lines.

  • Target Research Area

    Cell Biology

  • Target Synonyms

    B430307C05; C163B_HUMAN; CD163 antigen B; CD163 antigen-like 1; CD163 molecule-like 1; CD163b; CD163b antigen; CD163L1; CD164L1; E430002D04Rik; M160; RGD1307378; Scart1; Scavenger receptor cysteine-rich type 1 protein M160

  • Target Background

    This gene encodes a member of the scavenger receptor cysteine-rich (SRCR) superfamily. Members of this family are secreted or membrane-anchored proteins mainly found in cells associated with the immune system. The SRCR family is defined by a 100-110 amino acid SRCR domain, which may mediate protein-protein interaction and ligand binding. The encoded protein contains twelve SRCR domains, a transmembrane region and a cytoplasmic domain. Alternative splicing results in multiple transcript variants encoding different isoforms.

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