Probable NADPH:quinone oxidoreductase 1 (Os01g0953600, LOC_Os01g72430), Recombinant Protein
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Probable NADPH:quinone oxidoreductase 1 (Os01g0953600, LOC_Os01g72430), Recombinant Protein

Cat: RP14107
Size: 0.02 mg (E-Coli)/ 0.1 mg (E-Coli)/ 0.02 mg (Yeast)/ 0.1 mg (Yeast)/ 0.02 mg (Baculovirus)/ 0.02 mg (Mammalian-Cell)/ 1 mg (E-Coli)/ 0.1 mg (Baculovirus)/ 1 mg (Yeast)/ 0.1 mg (Mammalian-Cell)/ 1 mg (Baculovirus)/ 0.5 mg (Mammalian-Cell)
Species: Oryza sativa subsp. japonica (Rice)
Datasheet:

Product Info

Full Product Name
Recombinant Oryza sativa subsp. japonica Probable NADPH:quinone oxidoreductase 1 (Os01g0953600, LOC_Os01g72430)
Product Gene Name
Os01g0953600 recombinant protein
Product Synonym Gene Name
Os01g0953600; LOC_Os01g72430
Purity
Greater or equal to 85% purity as determined by SDS-PAGE. (lot specific)
Sequence
MEAAAARPVI RVAAICGSLR KASYNGGLLR AAAGVCEESI PGLRVDHVDI SGLPLLNTDL ETADGGFPPA VEAFRDKVRQ ADCFLFGSPE YNYSIATPLK NALDWASRGQ NCWADKPAAI VSAGGGFGGG RSQYHLRQVG VFLDLHFINK PELAVKAFEQ PPKFDSDGNL IDAQIRERIK QVLLSLQAFT LRLQKKD
Sequence Positions
1-197, Full length protein
Format
Lyophilized or liquid (Format to be determined during the manufacturing process)
Host
E Coli or Yeast or Baculovirus or Mammalian Cell
Molecular Weight
21,324 Da
Storage
Store at -20℃. For long-term storage, store at -20℃ or -80℃. Store working aliquots at 4℃ for up to one week. Repeated freezing and thawing is not recommended.
Protein Family
Probable NADPH:quinone oxidoreductase

NCBI/Uniprot Data

NCBI Accession #
XP_015614534.1
NCBI GI #
1002231898
NCBI GenBank Nucleotide #
XM_015759048.1
NCBI GeneID
4325400
NCBI Official Full Name
probable NADPH:quinone oxidoreductase 1
NCBI Official Symbol
LOC4325400
NCBI Protein Information
probable NADPH:quinone oxidoreductase 1
UniProt Gene Name
Os01g0953600
UniProt Protein Name
Probable NADPH:quinone oxidoreductase 1
UniProt Primary Accession #
Q941Z0
UniProt Secondary Accession #
Q0JFY5
UniProt Related Accession #
Q941Z0
UniProt Comments
The enzyme apparently serves as a quinone reductase in connection with conjugation reactions of hydroquinones involved in detoxification pathways.

For research use only, not for clinical use.