Product Description
Glucose-6-phosphate dehydrogenase is the rate-limiting enzyme of the pentose phosphate pathway, a metabolic pathway that supplies reducing energy to cells by maintaining the level of NADPH. G6PD converts glucose-6-phosphate into 6-phosphoglucono-delta-lactone and simultaneously produce NADPH. The NADPH in turn maintains the level of glutathione in these cells that helps protect the red blood cells against oxidative damage. G6PD deficiency cause acute hemolytic anemia.
Biovision | 6367 | E.Coli Recombinant G6PD DataSheet
Biomolecule/Target: N/A
Synonyms: E.Coli Recombinant G6PD
Alternates names: Glucose-6-phosphate 1-dehydrogenase, Zwf.
Taglines: Rate-limiting enzyme of the pentose phosphate pathway
NCBI Gene ID #: 6374
NCBI Gene Symbol: ENA-78
Gene Source: E. Coli
Accession #: P42830
Recombinant: Yes
Source: E. Coli
Purity by SDS-PAGEs: 98%
Assay: SDS-PAGE
Purity: N/A
Assay #2: N/A
Endotoxin Level: N/A
Activity (Specifications/test method): N/A
Biological activity: Specific activity is 8-10 units/ml obtained by measuring the increase of NADPH in absorbance at 340 nm resulting from the reduction of NAD or NADP.
Results: 8-10 units/ml
Binding Capacity: N/A
Unit Definition: One unit oxidizes 1.0 µmole D-glucose-6-phosphate to 6-phospho-D-gluconate per min in the presence of -NADP at pH 7.4 at 25°C.
Molecular Weight: 55.7 kDa (491 aa, 1-491 aa)
Concentration: 1 mg/ml
Appearance: Liquid
Physical form description: 1 mg/ml solution in 50 mM MES pH 6.0, 0.1 mM PMSF, 2 mM EDTA, 0.5 mM DTT and 10% glycerol.
Reconstitution Instructions: N/A
Amino acid sequence: MAVTQTAQAC DLVIFGAKGD LARRKLLPSL YQLEKAGQLN PDTRIIGVGR ADWDKAAYTK VVREALETFM KETIDEGLWD TLSARLDFCN LDVNDTAAFS RLGAMLDQKN RITINYFAMP PSTFGAICKG LGEAKLNAKP ARVVMEKPLG TSLATSQEIN DQVGEYFEEC QVYRIDHYLG KETVLNLLAL RFANSLFVNN WDNRTIDHVE ITVAEEVGIE GRWGYFDKAG QMRDMIQNHL LQILCMIAMS PPSDLSADSI RDEKVKVLKS LRRIDRSNVR EKTVRGQYTA GFAQGKKVPG YLEEEGANKS SNTETFVAIR VDIDNWRWAG VPFYLRTGKR LPTKCSEVVV YFKTPELNLF KESWQDLPQN KLTIRLQPDE GVDIQVLNKV PGLDHKHNLQ ITKLDLSYSE TFNQTHLADA YERLLLETMR GIQALFVRRD EVEEAWKWVD SITEAWAMDN DAPKPYQAGT WGPVASVAMI TRDGRSWNEF E