RETNLB Protein
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- Target See all RETNLB Proteins
- RETNLB (Resistin Like beta (RETNLB))
- Protein Type
- Recombinant
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Origin
- Human
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Source
- Escherichia coli (E. coli)
- Sequence
- MQCSLDSVMD KKIKDVLNSL EYSPSPISKK LSCASVKSQG RPSSCPAGMA VTGCACGYGC GSWDVQLETT CHCQCSVVDW TTARCCHLT
- Characteristics
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Purified recombinant Human RELM beta protein
Expression System: E.coli - Purity
- > 95 % pure
- Endotoxin Level
- < 0.1 ng per µg (1 EU/µg).
- Top Product
- Discover our top product RETNLB Protein
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- Application Notes
- Each Investigator should determine their own optimal working dilution for specific applications.
- Restrictions
- For Research Use only
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- Format
- Lyophilized
- Reconstitution
- Reconstitute by adding 0.2 mL of 0.5 Acetate buffer pH 4.0 and let the lyophilized pellet dissolve completely.
- Buffer
- Lyophilized from 0.05 M Acetate buffe, pH 4.0.
- Handling Advice
- Avoid repeated freeze/thaw cycles.
- Storage
- 4 °C/-20 °C
- Storage Comment
- Store at 4 °C until reconstitution. Following reconstitution aliquot and freeze at -20 °C for long term storage.
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- Target
- RETNLB (Resistin Like beta (RETNLB))
- Alternative Name
- RELM beta (RETNLB Products)
- Synonyms
- FIZZ1 Protein, FIZZ2 Protein, HXCP2 Protein, RELM-beta Protein, RELMb Protein, RELMbeta Protein, XCP2 Protein, RETNLB Protein, 9030012B21Rik Protein, Fizz2 Protein, Relmb Protein, Xcp3 Protein, resistin like beta Protein, RETNLB Protein, Retnlb Protein
- Background
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Human RELM-beta is a 19.0 kDa disulfide-linked homodimeric protein expressed in the epithelium of the colon and small bowel. The biological functions of RELM-beta and its molecular targets, are not fully known but, it has been suggested that it plays a regulatory role during inflammation and may also act to establish links among adipose tissue, the intestine and the liver. Interestingly the molecular structure of RELM-beta is highly homologous to that of the adipose-derived cytokine Resistin and RELM-a.
Alternative Names: Resistin-like beta protein, Cysteine-rich secreted protein FIZZ2 protein - Molecular Weight
- 19 kDa
- Pathways
- Hormone Activity
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