Recombinant Tumor Necrosis Factor Ligand Superfamily, Member 9 (TNFSF9)
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Catalog number
MBS2030486
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Price
Please ask
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Size
0,01 mg
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Other size
please contact us to order other different size
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Description
Aplha, transcription related growth factors and stimulating factors or repressing nuclear factors are complex subunits of proteins involved in cell differentiation. Complex subunit associated factors are involved in hybridoma growth, Eosinohils, eritroid proliferation and derived from promotor binding stimulating subunits on the DNA binding complex. NFKB 105 subunit for example is a polypetide gene enhancer of genes in B cells. FAS ligand and other ligands are binding to the receptor for signaling pathways for example in apoptosis or JNK signaling. Receptor agonists are often tested for drug development.
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Source
Recombinants or rec. proteins
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Group
recombinants
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Gene target
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Gene symbol
TNFSF9
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Short name
Recombinant Tumor Necrosis Factor Ligand Superfamily, Member 9 (TNFSF9)
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Technique
Recombinant, E. coli recombinant proteins are genetic recombinations in Escherichia coli, supplied as white sterile powder lyopillized. MyBioSource advises they will be reconstituted in a buffer soluion or culture medium for cell culture.
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Alternative name
Rec. Tumor Necrosis Factor Ligand supergroup, Member 9 (tumor necrosis factor (ligand) superfamily, member 9)
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Alternative technique
rec
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Alternative to gene target
tumor necrosis factor (ligand) superfamily, member 9, 4-1BB-L and CD137L, TNFSF9 and IDBG-21688 and ENSG00000125657 and 8744, tumor necrosis factor receptor superfamily binding, Extracellular, Tnfsf9 and IDBG-193693 and ENSMUSG00000035678 and 21950, TNFSF9 and IDBG-643947 and ENSBTAG00000046266 and 521748
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Tissue
tumor
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Gene info
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Identity
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Gene
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Long gene name
TNF superfamily member 9
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Synonyms gene name
- tumor necrosis factor (ligand) superfamily, member 9
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Synonyms
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Synonyms name
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GenBank acession
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Locus
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Discovery year
1998-12-04
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Entrez gene record
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Pubmed identfication
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RefSeq identity
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Classification
- Tumor necrosis factor superfamily
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VEGA ID
MeSH Data
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Name
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Concept
Scope note:
A cytologic technique for measuring the functional capacity of tumor stem cells by assaying their activity. It is used primarily for the in vitro testing of antineoplastic agents.
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Tree numbers
- E01.370.225.500.383.910
- E01.370.225.500.388.930
- E05.200.500.383.910
- E05.200.500.388.930
- E05.242.383.910
- E05.242.417.500
- E05.337.550.200.800
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Qualifiers
ethics, trends, veterinary, history, classification, economics, instrumentation, methods, standards, statistics & numerical data
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