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Recombinant Mouse TNFSF11

Cat.No. : Tnfsf11-192M
Product Overview : Recombinant Mouse TNFSF11 was expressed in Yeast.
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  • Gene Information
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Cat. No. : Tnfsf11-192M
Description : RANKL binds to tnfrsf11b/opg and to tnfrsf11a/rank. Osteoclast differentiation and activation factor. Augments the ability of dendritic cells to stimulate naive t-cell proliferation. May be an important regulator of interactions between t-cells and dendritic cells and may play a role in the regulation of the t-cell-dependent immune response. sRANKL may also play an important role in enhanced bone-resorption in humoral hypercalcemia of malignancy.
Source : Yeast
MolecularMass : 19.8 kDa
Formulation : Lyophilized. Reconstitute with sterile phosphate-buffered saline containing at least 0.1% carrier protein.
Purity : >95% as determined by SDS­PAGE analysis.
ProteinSequence : FSGAPAMMEG SWLDVAQRGK PEAQPFAHLT INAASIPSGS HKVTLSSWYH DRGWAKISNM TLSNGKLRVN QDGFYYLYAN ICFRHHETSG SVPTDYLQLM VYVVKTSIKI PSSHNLMKGG STKNWSGNSE FHFYSINVGG FFKLRAGEEI SIQVSNPSLL DPDQDATYFG AFKVQDID (178)
Purification : Ion-exchange chromatography
Storage : Stable for up to twelve months from date of receipt at -20 oC. Stable for at least 3 months when stored in working aliquots with a carrier protein at -20 oC. Avoid repeated freeze/thaw cycles.
OfficialSymbol : Tnfsf11
Gene Name : Tnfsf11 tumor necrosis factor (ligand) superfamily, member 11 [ Mus musculus ]
Synonyms : Tnfsf11; tumor necrosis factor (ligand) superfamily, member 11; ODF; OPG; OPGL; RANKL; Ly109l; Trance; OPG ligand; osteoprotegerin ligand; osteoclast differentiation factor; receptor activator of NF-kappaB ligand; tumor necrosis factor-related activation-induced cytokine; Ly109l
Gene ID : 21943
mRNA Refseq : NM_011613
Protein Refseq : NP_035743
UniProt ID : O35235
Chromosome Location : 14 D3
Pathway : Cytokine-cytokine receptor interaction
Function : cytokine activity; protein binding; receptor activity; tumor necrosis factor receptor binding

For Research Use Only. Not intended for any clinical use. No products from Creative BioMart may be resold, modified for resale or used to manufacture commercial products without prior written approval from Creative BioMart.

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Q&As (6)

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How can the expression level of TNFSF11 protein be used for disease diagnosis and prognosis assessment? 09/19/2022

It is possible to detect the expression level of TNFSF11 protein to help diagnose tumors and other diseases, and to assess their prognosis and treatment effectiveness.

How to use the activity of TNFSF11 protein for disease treatment? 03/14/2022

At present, a variety of drugs have been developed to target TNFSF11 proteins and their related signaling pathways, including inhibiting their expression and inhibiting their binding to receptors, etc., for the treatment of tumors and other bone metabolism-related diseases.

What is the relationship between TNFSF11 proteins and infectious diseases? 08/11/2021

Studies have shown that TNFSF11 proteins can be involved in the regulation of infectious diseases, such as playing a role in some viral infections.

How well are TNFSF11 proteins expressed in different tissues and organs? 10/06/2020

There are differences in the expression of TNFSF11 proteins in different tissues and organs, and they are expressed in tissues and organs such as the immune system, bones, and teeth, and the expression level may be affected by many factors.

What is the relationship between TNFSF11 proteins and autoimmune diseases? 04/02/2020

Studies have shown that TNFSF11 proteins can be involved in the regulation of autoimmune diseases, such as in autoimmune diseases such as rheumatoid arthritis.

What is the relationship between TNFSF11 proteins and other TNF superfamily members? 01/31/2019

TNFSF11 protein belongs to the TNF superfamily and has certain structural and functional similarities with other members of the TNF superfamily.

Customer Reviews (3)

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Reviews
10/14/2022

    The reproducibility of TNFSF11 is so good that the results are highly consistent regardless of the conditions under which the experiment or application is performed, greatly reducing the experimental error.

    11/24/2020

      Green production process of TNFSF11 is highly commendable, which uses the most advanced biotechnology to increase production efficiency and reduce environmental impact.

      07/22/2020

        The short half-life and high clearance of TNFSF11 make it better able to adapt to changing treatment needs and provide patients with more flexible treatment options.

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