ArticlePloS one2023
Metabolomic and transcriptomic analyses of Fmo5-/- mice reveal roles for flavin-containing monooxygenase 5 (FMO5) in NRF2-mediated oxidative stress response, unfolded protein response, lipid homeostasis, and carbohydrate and one-carbon metabolism.
Article in PloS one, 2023. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 12 papers.
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12 citing papers in PubMed, 10 citations in OpenAlex.
- The 2R, 3R isomer of 2, 3-butanediol prevents weight gain and decreases plasma glucose concentration of mice fed a fat-enriched diet.Frontiers in physiology · 2026Article
- Alterations in Gut Microbial Co-Abundance Networks in Metabolic Syndrome: A Population-Based Cross-Sectional Study.Microorganisms · 2025Article
- Adverse adult-onset and multigenerational effects in zebrafish (Danio rerio) developmentally exposed to polystyrene nanoplastics.Environmental pollution (Barking, Essex : 1987) · 2025Article
- Bacterial exopolysaccharides mediate activation of flavin-containing monooxygenase 2 to extend lifespan in Caenorhabditis elegans.Cell communication and signaling : CCS · 2025Article
- Metabolic regulation of behavior by the intestinal enzyme FMO-2.Science advances · 2025Article
- Role of NAD metabolism-related genes in diabetic nephropathy: subtype classification, biomarker identification, and association with renal function.Experimental biology and medicine (Maywood, N.J.) · 2025Article
- Contribution of cuproptosis and immune-related genes to idiopathic pulmonary fibrosis disease.Frontiers in immunology · 2025Article
- A Sex-specific Role for Goblet Cells and Mucus Homeostasis in the Intestine.Cellular and molecular gastroenterology and hepatology · 2025Article
- Flavin-containing monooxygenase (FMO): Beyond xenobiotics.BioEssays : news and reviews in molecular, cellular and developmental biology · 2024Review
- The Impact of SLC2A8 RNA Interference on Glucose Uptake and the Transcriptome of Human Trophoblast Cells.Cells · 2024Article
- Puerarin ameliorates non-alcoholic fatty liver disease by inhibiting lipid metabolism through FMO5.Frontiers in pharmacology · 2024Article
- Mechanism of electrothermal acupuncture in alleviating postherpetic neuralgia.Frontiers in neurologyArticle
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4 authors at 3 institutions in 1 country.
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Abstract
Flavin-containing monooxygenase 5 (FMO5) is a member of the FMO family of proteins, best known for their roles in the detoxification of foreign chemicals and, more recently, in endogenous metabolism. We have previously shown that Fmo5-/- mice display an age-related lean phenotype, with much reduced weight gain from 20 weeks of age. The phenotype is characterized by decreased fat deposition, lower plasma concentrations of glucose, insulin and cholesterol, higher glucose tolerance and insulin sensitivity, and resistance to diet-induced obesity. In the present study we report the use of metabolomic and transcriptomic analyses of livers of Fmo5-/- and wild-type mice to identify factors underlying the lean phenotype of Fmo5-/- mice and gain insights into the function of FMO5. Metabolomics was performed by the Metabolon platform, utilising ultrahigh performance liquid chromatography-tandem mass spectroscopy. Transcriptomics was performed by RNA-Seq and results analysed by DESeq2. Disruption of the Fmo5 gene has wide-ranging effects on the abundance of metabolites and expression of genes in the liver. Metabolites whose concentration differed between Fmo5-/- and wild-type mice include several saturated and monounsaturated fatty acids, complex lipids, amino acids, one-carbon intermediates and ADP-ribose. Among the genes most significantly and/or highly differentially expressed are Apoa4, Cd36, Fitm1, Hspa5, Hyou1, Ide, Me1 and Mme. The results reveal that FMO5 is involved in upregulating the NRF2-mediated oxidative stress response, the unfolded protein response and response to hypoxia and cellular stress, indicating a role for the enzyme in adaptation to oxidative and metabolic stress. FMO5 also plays a role in stimulating a wide range of metabolic pathways and processes, particularly ones involved in lipid homeostasis, the uptake and metabolism of glucose, the generation of cytosolic NADPH, and in one-carbon metabolism. The results predict that FMO5 acts by stimulating the NRF2, XBP1, PPARA and PPARG regulatory pathways, while inhibiting STAT1 and IRF7 pathways.
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