MDH1 (NM_001199111) Human Recombinant Protein

CAT#: TP720248

Recombinant protein of human malate dehydrogenase 1, NAD (soluble) (MDH1), transcript variant 1.

Size: 10 ug 50 ug 500 ug 1 mg


  View other "MDH1" proteins (6)

USD 330.00

7 Weeks*

Size
    • 10 ug

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Frequently bought together (1)
Goat Polyclonal Anti-MDH1 / MOR2 (aa211-223) Antibody
    • 100 ug

USD 520.00

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Specifications

Product Data
Species Human
Expression Host E. coli
Expression cDNA Clone or AA Sequence
Tag C-His
Predicted MW 37.5 kDa
Concentration lot specific
Purity >95% as determined by SDS-PAGE and Coomassie blue staining
Buffer Provided lyophilized from a 0.2 μm filtered solution of 20 mM Tris-HCl, 150 mM NaCl
Endotoxin < 0.1 EU per µg protein as determined by LAL test
Storage Store at -80°C.
Stability Stable for at least 3 months from date of receipt under proper storage and handling conditions.
Reference Data
RefSeq NP_001186040
Locus ID 4190
UniProt ID P40925
Cytogenetics 2p15
Synonyms DEE88; EIEE88; HEL-S-32; KAR; MDH-s; MDHA; MGC:1375; MOR2
Summary This gene encodes an enzyme that catalyzes the NAD/NADH-dependent, reversible oxidation of malate to oxaloacetate in many metabolic pathways, including the citric acid cycle. Two main isozymes are known to exist in eukaryotic cells: one is found in the mitochondrial matrix and the other in the cytoplasm. This gene encodes the cytosolic isozyme, which plays a key role in the malate-aspartate shuttle that allows malate to pass through the mitochondrial membrane to be transformed into oxaloacetate for further cellular processes. Alternatively spliced transcript variants have been found for this gene. A recent study showed that a C-terminally extended isoform is produced by use of an alternative in-frame translation termination codon via a stop codon readthrough mechanism, and that this isoform is localized in the peroxisomes. Pseudogenes have been identified on chromosomes X and 6. [provided by RefSeq, Feb 2016]
Protein Families Druggable Genome
Protein Pathways Citrate cycle (TCA cycle), Glyoxylate and dicarboxylate metabolism, Metabolic pathways, Pyruvate metabolism

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