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C277

Recombinant Human L-xylulose reductase/DCXR

10ug

1200

1080

现货

国产

C277

Recombinant Human L-xylulose reductase/DCXR

50ug

3520

3168

现货

国产

C277

Recombinant Human L-xylulose reductase/DCXR

500ug

12320

11088

现货

国产

C277

Recombinant Human L-xylulose reductase/DCXR

1mg

17600

15840

现货

国产

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  • Catalog# C277
    Source E.coli
    Description Recombinant Human L-Xylulose Reductase/DCXR is produced by our E. coli expression system. The target protein is expressed with sequence (Met1-Cys244) of Human DCXR fused with a 6His tag at the N-terminus.
    Names L-Xylulose Reductase, XR, Carbonyl Reductase II, Dicarbonyl/L-Xylulose Reductase, Kidney Dicarbonyl Reductase, kiDCR, Sperm Surface Protein P34H, DCXR
    Accession # Q7Z4W1
    Formulation Supplied as a 0.2 μm filtered solution of 50mM Tris, 150mM NaCl, 1mM DTT, 30% Glycerol, 1mM DTT, pH 8.0
    Shipping The product is shipped on dry ice/ice packs.
    Storage Store at < -20°C, stable for 6 months after receipt.
    Please minimize freeze-thaw cycles.
    Purity Greater than 95% as determined by SEC-HPLC and reducing SDS-PAGE.
    Endotoxin Less than 0.1 ng/μg (1 IEU/μg).
    Amino Acid Sequence
    MGSSHHHHHHSSGLVPRGSHMELFLAGRRVLVTGAGKGIGRGTVQALHATGARVVAVSRTQADLD SLVRECPGIEPVCVDLGDWEATERALGSVGPVDLLVNNAAVALLQPFLEVTKEAFDRSFEVNLRA VIQVSQIVARGLIARGVPGAIVNVSSQCSQRAVTNHSVYCSTKGALDMLTKVMALELGPHKIRVN AVNPTVVMTSMGQATWSDPHKAKTMLNRIPLGKFAEVEHVVNAILFLLSDRSGMTTGSTLPVEGG FWAC
    Background L-Xylulose Reductase is an enzyme that belongs to the Short-Chain Dehydrogenases/Reductases (SDR) family. L-Xylulose Reductase is responsible for the metabolism of Xylulose, converting it into Xylitol. L-Xylulose Reductase catalyzes the NADPH-dependent reduction of several Pentoses, Tetroses, Trioses, α-Dicarbonyl compounds and L-Xylulose. L-Xylulose Reductase participates in the Uronate Cycle of Glucose metabolism. It may play a role in the water absorption and cellular osmoregulation in the proximal renal tubules by producing Xylitol, an osmolyte, thereby preventing osmolytic stress from occurring in the renal tubules.