AKR1B10 (Human) Recombinant Protein (P01)
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More Files
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Specification
Product Description
Human AKR1B10 full-length ORF ( AAH08837, 1 a.a. - 316 a.a.) recombinant protein with GST-tag at N-terminal.
Sequence
MATFVELSTKAKMPIVGLGTWKSPLGKVKEAVKVAIDAGYRHIDCAYVYQNEHEVGEAIQEKIQEKAVKREDLFIVSKLWPTFFERPLVRKAFEKTLKDLKLSYLDVYLIHWPQGFKSGDDLFPKDDKGNAIGGKATFLDAWEAMEELVDEGLVKALGVSNFSHFQIEKLLNKPGLKYKPVTNQAECHPYLTQEKLIQYCHSKGITVTAYSPLGSPDRPWAKPEDPSLLEDPKIKEIAAKHKKTAAQVLIRFHIQRNVIVIPKSVTPARIVENIQVFDFKLSDEEMATILSFNRNWRACNVLQSSHLEDYPFDAEY
Host
Wheat Germ (in vitro)
Theoretical MW (kDa)
60.50
Interspecies Antigen Sequence
Mouse (82); Rat (81)
Preparation Method
Purification
Glutathione Sepharose 4 Fast Flow
Quality Control Testing
12.5% SDS-PAGE Stained with Coomassie Blue.
Storage Buffer
50 mM Tris-HCI, 10 mM reduced Glutathione, pH=8.0 in the elution buffer.
Storage Instruction
Store at -80°C. Aliquot to avoid repeated freezing and thawing.
Note
Best use within three months from the date of receipt of this protein.
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Applications
Enzyme-linked Immunoabsorbent Assay
Western Blot (Recombinant protein)
Antibody Production
Protein Array
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Gene Info — AKR1B10
Entrez GeneID
57016GeneBank Accession#
BC008837Protein Accession#
AAH08837Gene Name
AKR1B10
Gene Alias
AKR1B11, AKR1B12, ALDRLn, ARL-1, ARL1, HIS, HSI, MGC14103
Gene Description
aldo-keto reductase family 1, member B10 (aldose reductase)
Omim ID
604707Gene Ontology
HyperlinkGene Summary
This gene encodes a member of the aldo/keto reductase superfamily, which consists of more than 40 known enzymes and proteins. This member can efficiently reduce aliphatic and aromatic aldehydes, and it is less active on hexoses. It is highly expressed in adrenal gland, small intestine, and colon, and may play an important role in liver carcinogenesis. [provided by RefSeq
Other Designations
aldo-keto reductase family 1, member B10|aldo-keto reductase family 1, member B11 (aldose reductase-like)|aldose reductase-like 1|aldose reductase-like peptide|aldose reductase-related protein|small intestine reductase
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Interactome
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Pathway
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Disease
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Publication Reference
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In vitro metabolism of a novel JNK inhibitor tanzisertib: interspecies differences in oxido-reduction and characterization of enzymes involved in metabolism.
Atsriku C, Hoffmann M, Moghaddam M, Kumar G, Surapaneni S.
Xenobiotica 2015 Jun; 45(6):465.
Application:Enzyme, Human, Tanzisertib were incubated in human liver microsomes, cytosol and hepatocytes.
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In vitro metabolism of a novel JNK inhibitor tanzisertib: interspecies differences in oxido-reduction and characterization of enzymes involved in metabolism.
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