Recombinant Mouse C-Type Lectin Domain Family 4 Member K (CD207) Protein (His)

Beta LifeScience SKU/CAT #: BLC-11112P
Greater than 85% as determined by SDS-PAGE.
Greater than 85% as determined by SDS-PAGE.

Recombinant Mouse C-Type Lectin Domain Family 4 Member K (CD207) Protein (His)

Beta LifeScience SKU/CAT #: BLC-11112P
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Product Overview

Description Recombinant Mouse C-Type Lectin Domain Family 4 Member K (CD207) Protein (His) is produced by our Mammalian cell expression system. This is a protein fragment.
Purity Greater than 85% as determined by SDS-PAGE.
Uniprotkb Q8VBX4
Target Symbol CD207
Synonyms Cd207; Clec4kC-type lectin domain family 4 member K; Langerin; CD antigen CD207
Species Mus musculus (Mouse)
Expression System Mammalian cell
Tag N-10His
Target Protein Sequence QAVFYPRLMGKILDVKSDAQMLKGRVDNISTLGSDLKTERGRVDDAEVQMQIVNTTLKRVRSQILSLETSMKIANDQLQILTMSWGEVDSLSAKIPELKRDLDKASALNTKVQGLQNSLENVNKLLKQQSDILEMVARGWKYFSGNFYYFSRTPKTWYSAEQFCISRKAHLTSVSSESEQKFLYKAADGIPHWIGLTKAGSEGDWYWVDQTSFNKEQSRRFWIPGEPNNAGNNEHCANIRVSALKCWNDGPCDNTFLFICKRPYVQTTE
Expression Range 63-331aa
Protein Length Partial
Mol. Weight 34.8 kDa
Research Area Metabolism
Form Liquid or Lyophilized powder
Buffer Liquid form: default storage buffer is Tris/PBS-based buffer, 5%-50% glycerol. Lyophilized powder form: the buffer before lyophilization is Tris/PBS-based buffer, 6% Trehalose, pH 8.0.
Storage 1. Store at -20°C/-80°C upon receipt, aliquoting is necessary for mutiple use. 2. Avoid repeated freeze-thaw cycles. 3. Store working aliquots at 4°C for up to one week. 4. In general, protein in liquid form is stable for up to 6 months at -20°C/-80°C. Protein in lyophilized powder form is stable for up to 12 months at -20°C/-80°C.
Notes Repeated freezing and thawing is not recommended. Store working aliquots at 4°C for up to one week.

Target Details

Target Function Calcium-dependent lectin displaying mannose-binding specificity. Induces the formation of Birbeck granules (BGs); is a potent regulator of membrane superimposition and zippering. Binds to sulfated as well as mannosylated glycans, keratan sulfate (KS) and beta-glucans. Facilitates uptake of antigens and is involved in the routing and/or processing of antigen for presentation to T cells.
Subcellular Location Membrane; Single-pass type II membrane protein.
Database References
Tissue Specificity Expressed by Langerhans cells. Expressed in dendritic cells and by scattered cells in lymph nodes and spleen. Also detected in some non-lymphoid tissues such as lung, liver and heart.

Gene Functions References

  1. Binding analysis between purified long and short forms of langerin and a series of keratin sulfate disaccharide components shows that the binding critically requires the 6-sulfation of Gal and that the long form of langerin displays higher affinity than the short form. PMID: 29631057
  2. Bacterial Polysaccharide Specificity of the Pattern Recognition Receptor Langerin Is Highly Species-dependent PMID: 27903635
  3. Data show that Candida albicans and Candida tropicalis preferentially localized in (and persisted within) a sub- population of Peyer's patch Langerin-positive dendritic cells. PMID: 26386376
  4. Langerin is expressed by the XCR1(+) "DC1" population of mice. PMID: 25516751
  5. Langerin+ dermal dendritic cells appear to be site- and strain-specific PMID: 24629018
  6. model of epicutaneous ovalbumin sensitization inducing an inflammatory skin resembling atopic dermatitis (AD) to explore the role of CD207 in the pathogenesis of AD PMID: 23117802
  7. Langerin-positive dendritic cells appear to be the predominant, though not exclusive, population responsible for in vivo transport of anti-DEC-205 antibodies from the skin to the draining lymph nodes in steady state and inflammation. PMID: 22291181
  8. Data demonstrated that CD207(+) CD8alpha(+) thymic DCs do not share a common origin with T cells but originate from intrathymic precursors. PMID: 21630253
  9. The normal corneal epithelium is endowed with CD11c(+) Langerin+ cells that are LCs, whereas the stroma is endowed with a separate population of (non-LC) Langerin+ DCs. PMID: 21482644
  10. Langerhan cells and (Langerin(+)) dermal dendritic cells thus seem to have a redundant function in regulating contact hypersensitivity PMID: 20703247
  11. molecular cloning and expression of Langerin transcripts in dendritic cells PMID: 11978773
  12. Developmentally regulated expression of Langerin isoforms provides a mechanism by which Langerin involvement in antigen uptake and processing could be regulated. PMID: 15191546
  13. CD207 has a role in maintaining Birbeck granules but not in Langerhans cell function PMID: 15601833
  14. Langerin may have an unanticipated role in cell-matrix interactions that modulate LC development, localization, or function PMID: 16557233
  15. CD207 antigens manifest a high degree of colocalization around the nucleus of the Langerhans cells. PMID: 16941665
  16. langerin(+) DCs patrol the dermis in the steady state and migrate to the skin DLNs charged with skin antigens PMID: 18086862
  17. dermal Langerin(+) dendritic cells (DCs) are radiosensitive and display a distinct cell surface phenotype PMID: 18086865
  18. Depletion of langerin(+) cells impaired intestinal IgA Ab responses after Topical transcutaneous immunization PMID: 18354155
  19. Langerin(+) cells do promote T cell responses to skin Ags PMID: 18354196
  20. In a knockin-mouse model of the immune response against Leishmania major parasites, langerin-expressing dendritic cells are, in general, dispensable for an efficient adaptive immune response against L. major parasites. PMID: 19124720
  21. Despite a marginal zone location, CD207(+) DCs lacked identifying molecules for 3 different types of macrophages, localized in proximity and, in contrast to macrophages, marginal zone DCs were poor scavengers of soluble and particulate substrates PMID: 19168629
  22. Langerhans cells(LC) and langerin(+) dermal dendritic cells(DC) represent distinct DC subsets that have specialized functions and that LC are important immunoregulatory cells PMID: 19218433

FAQs

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Proteins are sensitive to heat, and freeze-drying can preserve the activity of the majority of proteins. It improves protein stability, extends storage time, and reduces shipping costs. However, freeze-drying can also lead to the loss of the active portion of the protein and cause aggregation and denaturation issues. Nonetheless, these adverse effects can be minimized by incorporating protective agents such as stabilizers, additives, and excipients, and by carefully controlling various lyophilization conditions.

Commonly used protectant include saccharides, polyols, polymers, surfactants, some proteins and amino acids etc. We usually add 8% (mass ratio by volume) of trehalose and mannitol as lyoprotectant. Trehalose can significantly prevent the alter of the protein secondary structure, the extension and aggregation of proteins during freeze-drying process; mannitol is also a universal applied protectant and fillers, which can reduce the aggregation of certain proteins after lyophilization.

Our protein products do not contain carrier protein or other additives (such as bovine serum albumin (BSA), human serum albumin (HSA) and sucrose, etc., and when lyophilized with the solution with the lowest salt content, they often cannot form A white grid structure, but a small amount of protein is deposited in the tube during the freeze-drying process, forming a thin or invisible transparent protein layer.

Reminder: Before opening the tube cap, we recommend that you quickly centrifuge for 20-30 seconds in a small centrifuge, so that the protein attached to the tube cap or the tube wall can be aggregated at the bottom of the tube. Our quality control procedures ensure that each tube contains the correct amount of protein, and although sometimes you can't see the protein powder, the amount of protein in the tube is still very precise.

To learn more about how to properly dissolve the lyophilized recombinant protein, please visit Lyophilization FAQs.

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