Isocitrate dehydrogenase (IDH1) (NM_005896) Human Recombinant Protein

CAT#: TP710047

Recombinant protein of mutant(R132G) of human isocitrate dehydrogenase 1 (NADP+), soluble (IDH1),with C-terminal DDK tag,expressed in sf9 cells.



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CNY 4,020.00


货期*
现货

规格
    • 20 ug

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经常一起买 (1)
Anti-IDH1 (Isocitrate Dehydrogenase 1) mouse monoclonal antibody, clone OTI2H9 (formerly 2H9)
    • 100 ul

CNY 1,999.00
CNY 2,700.00

Specifications

Product Data
Species Human
Expression Host Sf9
Expression cDNA Clone or AA Sequence
A DNA sequence from TrueORF clone, RC400100, encoding human full-length Mutant IDH1(R132G)
Tag C-DDK
Predicted MW 47 kDa
Concentration >0.05 µg/µL as determined by microplate BCA method
Purity > 80% as determined by SDS-PAGE and Coomassie blue staining
Buffer 50 mM Tris-HCl, pH 8.0, 150 mM NaCl, 10% glycerol
Note For testing in cell culture applications, please filter before use. Note that you may experience some loss of protein during the filtration process.
Storage Store at -80°C.
Stability Stable for 12 months from the date of receipt of the product under proper storage and handling conditions. Avoid repeated freeze-thaw cycles.
Reference Data
RefSeq NP_005887
Locus ID 3417
UniProt ID O75874
Refseq Size 2339
Cytogenetics 2q34
Refseq ORF 1245
Synonyms HEL-216; HEL-S-26; IDCD; IDH; IDP; IDPC; PICD
Summary Isocitrate dehydrogenases catalyze the oxidative decarboxylation of isocitrate to 2-oxoglutarate. These enzymes belong to two distinct subclasses, one of which utilizes NAD(+) as the electron acceptor and the other NADP(+). Five isocitrate dehydrogenases have been reported: three NAD(+)-dependent isocitrate dehydrogenases, which localize to the mitochondrial matrix, and two NADP(+)-dependent isocitrate dehydrogenases, one of which is mitochondrial and the other predominantly cytosolic. Each NADP(+)-dependent isozyme is a homodimer. The protein encoded by this gene is the NADP(+)-dependent isocitrate dehydrogenase found in the cytoplasm and peroxisomes. It contains the PTS-1 peroxisomal targeting signal sequence. The presence of this enzyme in peroxisomes suggests roles in the regeneration of NADPH for intraperoxisomal reductions, such as the conversion of 2, 4-dienoyl-CoAs to 3-enoyl-CoAs, as well as in peroxisomal reactions that consume 2-oxoglutarate, namely the alpha-hydroxylation of phytanic acid. The cytoplasmic enzyme serves a significant role in cytoplasmic NADPH production. Alternatively spliced transcript variants encoding the same protein have been found for this gene. [provided by RefSeq, Sep 2013]
Protein Pathways Citrate cycle (TCA cycle), Glutathione metabolism, Metabolic pathways
*Delivery time may vary from web posted schedule. Occasional delays may occur due to unforeseen complexities in the preparation of your product. International customers may expect an additional 1-2 weeks in shipping.

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