Recombinant Human CYB5R3, His-tagged

Cat.No. : CYB5R3-11748H
Product Overview : Recombinant Human CYB5R3 protein, fused to His-tag, was expressed in E.coli and purified by Ni-sepharose.
Availability October 31, 2025
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Species : Human
Source : E.coli
Tag : His
Protein Length : 1-301a.a.
Description : This gene encodes cytochrome b5 reductase, which includes a membrane-bound form in somatic cells (anchored in the endoplasmic reticulum, mitochondrial and other membranes) and a soluble form in erythrocytes. The membrane-bound form exists mainly on the cytoplasmic side of the endoplasmic reticulum and functions in desaturation and elongation of fatty acids, in cholesterol biosynthesis, and in drug metabolism. The erythrocyte form is located in a soluble fraction of circulating erythrocytes and is involved in methemoglobin reduction. The membrane-bound form has both membrane-binding and catalytic domains, while the soluble form has only the catalytic domain. Alternate splicing results in multiple transcript variants. Mutations in this gene cause methemoglobinemias.
Source : E.coli
Species : Human
Tag : His
Storage : The protein is stored in PBS buffer at -20℃. Avoid repeated freezing and thawing cycles.
Storage Buffer : 1M PBS (58mM Na2HPO4,17mM NaH2PO4, 68mM NaCl, pH8. ) added with 300mM Imidazole and 0.7% Sarcosyl, 15%glycerol.
Gene Name CYB5R3 cytochrome b5 reductase 3 [ Homo sapiens ]
Official Symbol CYB5R3
Synonyms CYB5R3; cytochrome b5 reductase 3; DIA1, diaphorase (NADH) (cytochrome b 5 reductase); NADH-cytochrome b5 reductase 3; diaphorase-1; NADH-cytochrome b5 reductase 3 soluble form; NADH-cytochrome b5 reductase 3 membrane-bound form; B5R; DIA1;
Gene ID 1727
mRNA Refseq NM_000398
Protein Refseq NP_000389
MIM 613213
UniProt ID P00387
Chromosome Location 22q13.31-qter
Pathway Amino sugar and nucleotide sugar metabolism, organism-specific biosystem; Amino sugar and nucleotide sugar metabolism, conserved biosystem; Metabolism, organism-specific biosystem; Metabolism of vitamins and cofactors, organism-specific biosystem; Metabolism of water-soluble vitamins and cofactors, organism-specific biosystem; Vitamin C (ascorbate) metabolism, organism-specific biosystem; gamma-linolenate biosynthesis II (animals), organism-specific biosystem;
Function FAD binding; cytochrome-b5 reductase activity; oxidoreductase activity;

Not For Human Consumption!

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