HAO1, 1-370aa, Human

Category: Proteins
Catalog
01-P1168
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Product Name HAO1, 1-370aa, Human
Description HAO1, also known as glycolate oxidase, is a member of the superfamily of the alpha hydroxy acid oxidases(HAO) enzymes. It catalyzes the FMN mediated oxidation of glycolate to glyoxylate and glyoxylate to oxalate with reduction of oxygen to hydrogen peroxide. It is most highly expressed in liver and pancreas and is most active on twocarbon substrates such as glycolate. Recently, it has been identified as a major contributor to hyperoxaluria, a disorder in which large deposits of calcium oxalate form kidney stones. Recombinant human HAO1 protein, fused to His-tag at N-terminus, was expressed in E.coli and purified by using conventional chromatography.
Synonyms Hydroxyacid oxidase 1, GOX (glycolate oxidase), GOX1, HAOX1
Host E. coli
Molecular Weight 22.4 kDa (195aa), confirmed by MALDI-TOF
Amino Acid Sequence MRGSHHHHHH GMASMTGGQQ MGRDLYDDDD KDRWGSMLPR LICINDYEQH AKSVLPKSIY DYYRSGANDE ETLADNIAAF SRWKLYPRML RNVAETDLST SVLGQRVSMP ICVGATAMQR MAHVDGELAT VRACQSLGTG MMLSSWATSS IEEVAEAGPE ALRWLQLYIY KDREVTKKLV RQAEKMGYKA IFVTVDTPYL GNRLDDVRNR FKLPPQLRMK NFETSTLSFS PEENFGDDSG LAAYVAKAID PSISWEDIKW LRRLTSLPIV AKGILRGDDA REAVKHGLNG ILVSNHGARQ LDGVPATIDV LPEIVEAVEG KVEVFLDGGV RKGTDVLKAL ALGAKAVFVG RPIVWGLAFQ GEKGVQDVLE ILKEEFRLAM ALSGCQNVKV IDKTLVRKNP LAVSKI
Tag His-tag
Reactivity Human
Applications SDS-PAGE
Form Liquid, in 20mM Tris-HCl buffer (pH8.0) containing 20% glycerol, 1mM DTT
Concentration 0.25 mg/ml (determined by Bradford assay)
Purity > 95% by SDS-PAGE
Storage Can be stored at +4C short term (1-2 weeks). For long term storage, aliquot and store at -2°C or -7°C. Avoid repeated freezing and thawing cycles.
References Pennati A. and G. Gadda. (2009) J. Biol. Chem. 284:31214 Murray M.S. et al. (2008) Biochemistry, 47:2439
Background HAO1, also known as glycolate oxidase, is a member of the superfamily of the alpha hydroxy acid oxidases(HAO) enzymes. It catalyzes the FMN mediated oxidation of glycolate to glyoxylate and glyoxylate to oxalate with reduction of oxygen to hydrogen peroxide. It is most highly expressed in liver and pancreas and is most active on twocarbon substrates such as glycolate. Recently, it has been identified as a major contributor to hyperoxaluria, a disorder in which large deposits of calcium oxalate form kidney stones. Recombinant human HAO1 protein, fused to His-tag at N-terminus, was expressed in E.coli and purified by using conventional chromatography.
Supplier ARP

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