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Specifications
- Animal-free:Y
- Gene ID:650
- Protein/peptide type:Recombinant
- Source:CHO cells
- Species:HumanRatMouse
- Conjugation:Unconjugated
- Size:50 µg
- Biological activity:Determined by its ability to induce alkaline phosphatase production by ATDC-5 cells. The expected ED50 for this effect is 40-100 ng/ml.
- Protein synonyms:Bone Morphogenetic Protein-2|BMP-2A
- Protein/peptide name:BMP-2
- Purity:95%
- Molecular weight:25.8 kDa
- Sequence:QAKHKQRKRL KSSCKRHPLY VDFSDVGWND WIVAPPGYHA FYCHGECPFP LADHLNSTNH AIVQTLVNSV NSKIPKACCV PTELSAISML YLDENEKVVL KNYQDMVVEG CGCR
- Endotoxin level:low
- Formulation:Lyophilized
- Shipping temperature:Ambient
- Cat. no.:76303-718
Specifications
About this item
BMPs (Bone Morphogenetic Proteins) belong to the TGF-beta superfamily of structurally related signaling proteins. BMP-2 is a potent osteoinductive cytokine, capable of inducing bone and cartilage formation in association with an osteoconductive carrier such as collagen and synthetic hydroxyapatite. In addition to its osteogenic activity, BMP-2 appears to play an important role in cardiac morphogenesis, and is expressed in a variety of other tissues, including lung, liver, spleen, prostate, ovary, and small intestine. The functional form of BMP-2 is a 26 kDa protein composed of two identical 114 amino acid polypeptide chains (monomers) linked by a single disulfide bond. Each BMP-2 monomer is expressed as the C-terminal part of a precursor polypeptide, which also contains a 23 amino acid signal sequence for secretion, and a 259 amino acid propeptide. After dimerization of this precursor, the covalent bonds between the propeptide (which is also a disulfide-linked homodimer) and the mature BMP-2 ligand are cleaved by a furin-type protease. Recombinant Human/Murine/Rat BMP-2 derived from CHO cells is a homodimeric glycoprotein that consists of two 114 amino acid polypeptide chains linked by a single disulfide bond. Due to glycosylation, CHO cell-derived Human/Murine/Rat BMP-2 migrates at an apparent molecular weight of approximately 28-29 kDa by SDS-PAGE analysis under non-reducing conditions.