FMO3 polyclonal, anti-human, mouse, rat
€295.00
In stock
SKU
K003064P
Catalog Number: K003064P
Size: 100 μl
Other size: 50 μl
Isotype: Rabbit IgG
Applications: WB, IF
Request Manual
Questions? Contact us!
Size: 100 μl
Other size: 50 μl
Isotype: Rabbit IgG
Applications: WB, IF
Request Manual
Questions? Contact us!
Background:
Flavin-containing monooxygenases (FMO) are an important class of drug-metabolizing enzymes that catalyze the NADPH-dependent oxygenation of various nitrogen-,sulfur-, and phosphorous-containing xenobiotics such as therapeutic drugs, dietary compounds, pesticides, and other foreign compounds. The human FMO gene family is composed of 5 genes and multiple pseudogenes. FMO members have distinct developmental- and tissue-specific expression patterns. The expression of this FMO3 gene, the major FMO expressed in adult liver, can vary up to 20-fold between individuals. This inter-individual variation in FMO3 expression levels is likely to have significant effects on the rate at which xenobiotics are metabolised and, therefore, is of considerable interest to the pharmaceutical industry. This transmembrane protein localizes to the endoplasmic reticulum of many tissues. Alternative splicing of this gene results in multiple transcript variants encoding different isoforms. Mutations in this gene cause the disorder trimethylaminuria (TMAu) which is characterized by the accumulation and excretion of unmetabolized trimethylamine and a distinctive body odor. In healthy individuals, trimethylamine is primarily converted to the non odorous trimethylamine N-oxide.
Synonyms: FMOII, TMAU, dJ127D3.1
Cellular Location: Endoplasmic reticulum membrane Microsome membrane
Immunogen:
Recombinant protein of human FMO3
Gene Symbol: FMO3
Gene ID: 2328
Swiss prot: P31513
Calculated MW: 60kDa
Recommended dilution:
WB 1:500-2000, IF 1:10-100,
Purity:
Affinity purification
Storage Buffer:
Buffer: PBS with 0.02% sodium azide, 50% glycerol, pH7.3.
Storage:
Store at -20℃. Avoid freeze / thaw cycles.
Flavin-containing monooxygenases (FMO) are an important class of drug-metabolizing enzymes that catalyze the NADPH-dependent oxygenation of various nitrogen-,sulfur-, and phosphorous-containing xenobiotics such as therapeutic drugs, dietary compounds, pesticides, and other foreign compounds. The human FMO gene family is composed of 5 genes and multiple pseudogenes. FMO members have distinct developmental- and tissue-specific expression patterns. The expression of this FMO3 gene, the major FMO expressed in adult liver, can vary up to 20-fold between individuals. This inter-individual variation in FMO3 expression levels is likely to have significant effects on the rate at which xenobiotics are metabolised and, therefore, is of considerable interest to the pharmaceutical industry. This transmembrane protein localizes to the endoplasmic reticulum of many tissues. Alternative splicing of this gene results in multiple transcript variants encoding different isoforms. Mutations in this gene cause the disorder trimethylaminuria (TMAu) which is characterized by the accumulation and excretion of unmetabolized trimethylamine and a distinctive body odor. In healthy individuals, trimethylamine is primarily converted to the non odorous trimethylamine N-oxide.
Synonyms: FMOII, TMAU, dJ127D3.1
Cellular Location: Endoplasmic reticulum membrane Microsome membrane
Immunogen:
Recombinant protein of human FMO3
Gene Symbol: FMO3
Gene ID: 2328
Swiss prot: P31513
Calculated MW: 60kDa
Recommended dilution:
WB 1:500-2000, IF 1:10-100,
Purity:
Affinity purification
Storage Buffer:
Buffer: PBS with 0.02% sodium azide, 50% glycerol, pH7.3.
Storage:
Store at -20℃. Avoid freeze / thaw cycles.
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