FMO3 rabbit monoclonal antibody
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Specification
Product Description
Rabbit monoclonal antibody raised against a human FMO3 peptide using ARM Technology.
Immunogen
A synthetic peptide of human FMO3 is used for rabbit immunization.
Customer or Abnova will decide on the preferred peptide sequence.Host
Rabbit
Library Construction
Non-fusion antibody library from rabbit spleen (ARM Technology).
Expression
Overexpression vector and transfection into 293H cell line.
Reactivity
Human
Purification
Protein A
Isotype
IgG
Quality Control Testing
Antibody reactive against human FMO3 peptide by ELISA and mammalian transfected lysate by Western Blot.
Storage Buffer
In 1x PBS, pH 7.4
Storage Instruction
Store at -20°C or lower. Aliquot to avoid repeated freezing and thawing.
Deliverable
Up to three rabbit IgG clones of 100 ug each will be delivered to customer.
Note
1. Customer may provide cell or tissue lysate for antibody screening.
2. Rabbit monoclonal antibody generated by ARM technology is amenable to antibody engineering including F(ab)2, IgG, scFv and different Fc and non-Fc conjugates per customer request. -
Applications
Western Blot (Transfected lysate)
ELISA
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Gene Info — FMO3
Entrez GeneID
2328GeneBank Accession#
FMO3Gene Name
FMO3
Gene Alias
FMOII, MGC34400, TMAU, dJ127D3.1
Gene Description
flavin containing monooxygenase 3
Gene Ontology
HyperlinkGene Summary
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 the same protein. 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
Other Designations
Flavin-containing monooxygenase-3|OTTHUMP00000033540
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