IDH2 (NM_002168) Human Recombinant Protein

CAT#: TP710228

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Purified recombinant protein of Homo sapiens isocitrate dehydrogenase 2 (NADP+), mitochondrial (IDH2) and mutant(R172G) heterodimer, with C-terminal 6xHis and DDK tags, expressed in sf9 cells, 20 µg


Product Datasheet for 'TP710228'


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USD 425.00


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    • 20 ug


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Product Data
Description Purified recombinant protein of Homo sapiens isocitrate dehydrogenase 2 (NADP+), mitochondrial (IDH2) and mutant(R172G) heterodimer, with C-terminal 6xHis and DDK tags, expressed in sf9 cells, 20 µg
Species Human
Expression Host Sf9
Expression cDNA Clone or AA Sequence Two DNA sequences from TrueORF clone, RC201152 and RC400101, respectively encoding Homo sapiens full-length IDH2 and Mutant IDH2(R172G)
Tag C-DDK
Predicted MW 46.6 kDa
Concentration >50 ug/mL as determined by microplate BCA method
Purity > 80% as determined by SDS-PAGE and Coomassie blue staining
Buffer 50mM Tris-HCl, pH8.0, 100mM glycine, 10% glycerol.
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_002159
Locus ID 3418
Cytogenetics 15q26.1
Synonyms D2HGA2; ICD-M; IDH; IDHM; IDP; IDPM; mNADP-IDH
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 mitochondria. It plays a role in intermediary metabolism and energy production. This protein may tightly associate or interact with the pyruvate dehydrogenase complex. Alternative splicing results in multiple transcript variants. [provided by RefSeq, Feb 2014]
Protein Pathways Citrate cycle (TCA cycle), Glutathione metabolism, Metabolic pathways

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