ReviewBiochimica et biophysica acta. Molecular and cell biology of lipids2020
Enzymology of vertebrate carotenoid oxygenases.
Review in Biochimica et biophysica acta. Molecular and cell biology of lipids, 2020. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 25 papers.
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The abstract states no effect estimate the extractor could read, or names no intervention and outcome on the map, so this paper lights no cell and moves no belief. It is still indexed, cited and linked below.
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Who cites it
25 citing papers in PubMed, 42 citations in OpenAlex.
- Visual cycle-derived bisretinoids as endogenous natural products: enzyme-free formation, photochemical reactivity, and retinal degeneration.Natural product reports · 2026Review
- Genomic diversification between aposematic and cryptic phenotypes of Oophaga granulifera (Anura: Dendrobatidae).Scientific reports · 2026Article
- Phytoene, a Precursor of Lycopene in Tomatoes, Protects Against Metabolic Dysfunction-Associated Steatotic Liver Disease in Mice.Molecular nutrition & food research · 2026Article
- Bioconversion of carotenoids into high-value crocins using a marine sponge carotenoid cleavage dioxygenase.The New phytologist · 2026Article
- Retinoic acid production via the ray-finned fish gene bco1l is essential for juvenile development.Genetics · 2026Article
- Functional Analysis of theBiotech (Basel (Switzerland)) · 2026Article
- Effects of Dietary Vitamin A Concentration and Stress on Astaxanthin Utilization in Atlantic Salmon (Aquaculture nutrition · 2026Article
- Retinoic acid production via the ray-finned fish genebioRxiv : the preprint server for biology · 2025Article
- Multiplex metabolic engineering of yeast for high-efficiency all-trans-retinoic acid production.Microbial cell factories · 2025Article
- Carotenoids in Health as Studied by Omics-Related Endpoints.Advances in nutrition (Bethesda, Md.) · 2023Review
- Synergistic Protective Effect of Interactions of Quercetin with Lycopene Against Ochratoxin A-Induced Ulcerative Colitis.Applied biochemistry and biotechnology · 2023Article
- Carotenoids and Their Health Benefits as Derived via Their Interactions with Gut Microbiota.Advances in nutrition (Bethesda, Md.) · 2023Review
- β-Cryptoxanthin Attenuates Cigarette-Smoke-Induced Lung Lesions in the Absence of Carotenoid Cleavage Enzymes (BCO1/BCO2) in Mice.Molecules (Basel, Switzerland) · 2023Article
- A Computer Simulation Insight into the Formation of Apocarotenoids: Study of the Carotenoid Oxygenases BCO1 and BCO2 and Their Interaction with Putative Substrates.Molecules (Basel, Switzerland) · 2022Article
- Charge Maintenance during Catalysis in Nonheme Iron Oxygenases.ACS catalysis · 2022Article
- Review
- The Extraction of β-Carotene from Microalgae for Testing Their Health Benefits.Foods (Basel, Switzerland) · 2022Review
- Article
- Multi-omic Analysis of Non-human Primate Heart after Partial-body Radiation with Minimal Bone Marrow Sparing.Health physics · 2021Article
- Article
Corrections and comments
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Authors and funding
2 authors at 1 institution in 1 country.
Funding
Abstract
Mammals and higher vertebrates including humans have only three members of the carotenoid cleavage dioxygenase family of enzymes. This review focuses on the two that function as carotenoid oxygenases. β-Carotene 15,15'-dioxygenase (BCO1) catalyzes the oxidative cleavage of the central 15,15' carbon-carbon double of β-carotene bond by addition of molecular oxygen. The product of the reaction is retinaldehyde (retinal or β-apo-15-carotenal). Thus, BCO1 is the enzyme responsible for the conversion of provitamin A carotenoids to vitamin A. It also cleaves the 15,15' bond of β-apocarotenals to yield retinal and of lycopene to yield apo-15-lycopenal. β-Carotene 9',10'-dioxygenase (BCO2) catalyzes the cleavage of the 9,10 and 9',10' double bonds of a wider variety of carotenoids, including both provitamin A and non-provitamin A carotenoids, as well as the xanthophylls, lutein and zeaxanthin. Indeed, the enzyme shows a marked preference for utilization of these xanthophylls and other substrates with hydroxylated terminal rings. Studies of the phenotypes of BCO1 null, BCO2 null, and BCO1/2 double knockout mice and of humans with polymorphisms in the enzymes, has clarified the role of these enzymes in whole body carotenoid and vitamin A homeostasis. These studies also demonstrate the relationship between enzyme expression and whole body lipid and energy metabolism and oxidative stress. In addition, relationships between BCO1 and BCO2 and the development or risk of metabolic diseases, eye diseases and cancer have been observed. While the precise roles of the enzymes in the pathophysiology of most of these diseases is not presently clear, these gaps in knowledge provide fertile ground for rigorous future investigations. This article is part of a Special Issue entitled Carotenoids: Recent Advances in Cell and Molecular Biology edited by Johannes von Lintig and Loredana Quadro.
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Read under generation 80e0d062 · epoch 390. Bibliography from PubMed, PubMed Central and OpenAlex; grants from NIH RePORTER; trial links from ClinicalTrials.gov; estimates, votes and beliefs from the Socratic graph.