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Toll-Like Receptor 7 Polyclonal Antibody

Toll-Like Receptor 7 Polyclonal Antibody

Cat no: 13591


Supplier: Cayman Chemical Company
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Antigen: human TLR7 amino acids 706-728 . Host: rabbit . Cross Reactivity: (+) human, mouse, and rat TLR7 . Application(s): FC (intracellular and cell surface), ICC, IHC (frozen and paraffin), IP, and WB . Stimulation of the NF-kB signaling pathway by TLR7 suggests that it plays a role in immune response.
Catalogue number: 13591
Hosts: Rabbit
Applications: Flow Cytometry, Immunocytochemistry, Immunohistochemistry, Immunoprecipitation, Western Blot
Weight: 0
Form: 1 ea
Antigen: synthetic peptide from human TLR7 within the region of amino acids 706-728
P type: Antibodies
Shipping temp: -20
Storage temp: -20
Additional info: The toll-like receptors (TLRs) in mammals comprise a family of transmembrane proteins characterized by multiple copies of leucine rich repeats in the extracellular domain and an interleukin-1 (IL-1) receptor motif in the cytoplasmic domain. Like their counterparts in Drosophila, TLRs signal through adaptor molecules. The TLR family is a phylogenetically conserved mediator of innate immunity that is essential for microbial recognition. Most mammalian species have between ten and fifteen types of TLRs. Ten functional TLRs (TLR1-10) have been identified in human. Humans also encode a TLR11 gene but it contains several stop codons and protein is not expressed. However, mouse and rat TLR11 are functional, and it is thought that human TLR11 function was lost during evolution. Historically speaking, TLR expression has been most extensively studied in the immune system. Overall, TLRs are highly expressed in immune competent cells, including macrophages, dendritic cells, neutrophils, mucosal epithelial cells and dermal endothelial cells. However, TLRs have also been identified in many other cell types and anatomical tissue locations where they are expressed either constitutively or induced during infection. Stimulation of the NF-kB signaling pathway by TLR7 suggests that it plays a role in immune response.

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