Recombinant Mouse RANKL protein (ab151200)
Key features and details
- Expression system: Yeast
- Purity: > 95% SDS-PAGE
- Suitable for: SDS-PAGE
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Product name
Recombinant Mouse RANKL protein
See all RANKL proteins and peptides -
Purity
> 95 % SDS-PAGE.
ab151200 was purified by Ion-exchange Chromatography. -
Expression system
Yeast -
Accession
-
Protein length
Full length protein -
Animal free
No -
Nature
Recombinant -
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Species
Mouse -
Sequence
FSGAPAMMEG SWLDVAQRGK PEAQPFAHLT INAASIPSGS HKVTLSSWYH DRGWAKISNM TLSNGKLRVN QDGFYYLYAN ICFRHHETSG SVPTDYLQLM VYVVKTSIKI PSSHNLMKGG STKNWSGNSE FHFYSINVGG FFKLRAGEEI SIQVSNPSLL DPDQDATYFG AFKVQDID -
Predicted molecular weight
20 kDa -
Amino acids
139 to 316
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Preparation and Storage
-
Alternative names
- CD254
- hRANKL2
- ODF
see all -
Function
Cytokine that 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. May also play an important role in enhanced bone-resorption in humoral hypercalcemia of malignancy. -
Tissue specificity
Highest in the peripheral lymph nodes, weak in spleen, peripheral blood Leukocytes, bone marrow, heart, placenta, skeletal muscle, stomach and thyroid. -
Involvement in disease
Defects in TNFSF11 are the cause of osteopetrosis autosomal recessive type 2 (OPTB2) [MIM:259710]; also known as osteoclast-poor osteopetrosis. Osteopetrosis is a rare genetic disease characterized by abnormally dense bone, due to defective resorption of immature bone. The disorder occurs in two forms: a severe autosomal recessive form occurring in utero, infancy, or childhood, and a benign autosomal dominant form occurring in adolescence or adulthood. Autosomal recessive osteopetrosis is usually associated with normal or elevated amount of non-functional osteoclasts. OPTB2 is characterized by paucity of osteoclasts, suggesting a molecular defect in osteoclast development. -
Sequence similarities
Belongs to the tumor necrosis factor family. -
Post-translational
modificationsThe soluble form of isoform 1 derives from the membrane form by proteolytic processing (By similarity). The cleavage may be catalyzed by ADAM17. -
Cellular localization
Cytoplasm; Secreted and Cell membrane. - Information by UniProt