FABP1 Protein
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- Target See all FABP1 Proteins
- FABP1 (Fatty Acid Binding Protein 1, Liver (FABP1))
- Protein Type
- Recombinant
- Biological Activity
- Active
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Origin
- Mouse
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Source
- Escherichia coli (E. coli)
- Application
- Functional Studies (Func)
- Sequence
- MNFSGKYQLQ SQENFEPFMK AIGLPEDLIQ KGKDIKGVSE IVHEGKKIKL TITYGPKVVR NEFTLGEECE LETMTGEKVK AVVKLEGDNK MVTTFKGIKS VTELNGDTIT NTMTLGDIVY KRVSKRI
- Characteristics
- Biological Activity: Fully biologically active when compared to standard. The binding affinity of rMuFABP1 for the synthetic ligand cis-parinaric acid has been measured by fluorescence titration. Half maximal fluorescence of 2.5 μM rMuFABP1 is achieved with approximately 5 μM
- Purity
- >95 % as determined by SDS-PAGE and HPLC.
- Sterility
- 0.2 μm filtered
- Top Product
- Discover our top product FABP1 Protein
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- Restrictions
- For Research Use only
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- Format
- Lyophilized
- Buffer
- PBS, pH 7.4, 2 % trehalose
- Storage
- -20 °C
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- Target
- FABP1 (Fatty Acid Binding Protein 1, Liver (FABP1))
- Alternative Name
- Fabp1 (FABP1 Products)
- Synonyms
- FABPL Protein, L-FABP Protein, KAT4 Protein, KATIV Protein, mitAAT Protein, Fabpl Protein, Fabplg Protein, SCP Protein, SCP. Protein, p14 Protein, FABP1 Protein, FABP Protein, LFABP Protein, liver Protein, fabp1 Protein, Fabp1 Protein, FABP-1 Protein, FABPpm Protein, mAspAT Protein, fatty acid binding protein 1 Protein, glutamic-oxaloacetic transaminase 2 Protein, fatty acid binding protein 1, liver Protein, fatty acid binding protein 1a, liver Protein, fatty acid-binding protein, liver Protein, FABP1 Protein, GOT2 Protein, Fabp1 Protein, fabp1a Protein, LOC100726384 Protein
- Background
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Relevance: Binds free fatty acids and their coenzyme A derivatives, bilirubin, and some other small molecules in the cytoplasm. May be involved in intracellular lipid transport. Also seems to bind selenium.
Synonyms: 14 kDa selenium-binding protein, Liver-type fatty acid-binding protein, L-FABP - Molecular Weight
- 14.2 kDa
- UniProt
- P12710
- Pathways
- Chromatin Binding, Regulation of Lipid Metabolism by PPARalpha
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