Metabolism, Nutrition, and Redox Signaling of Hydroxyproline.


Journal

Antioxidants & redox signaling
ISSN: 1557-7716
Titre abrégé: Antioxid Redox Signal
Pays: United States
ID NLM: 100888899

Informations de publication

Date de publication:
01 02 2019
Historique:
pubmed: 25 9 2017
medline: 19 5 2020
entrez: 23 9 2017
Statut: ppublish

Résumé

Hydroxyproline is a structurally and physiologically important imino acid in animals. It is provided from diets and endogenous synthesis, and its conversion into glycine enhances the production of glutathione, DNA, heme, and protein. Furthermore, oxidation of hydroxyproline by hydroxyproline oxidase (OH-POX) plays an important role in cell antioxidative reactions, survival, and homeostasis. Understanding the mechanisms whereby hydroxyproline participates in metabolism and cell signaling can improve the nutrition and health of animals and humans. Recent Advances: Hydroxyproline is highly abundant in milk and is utilized for renal synthesis of glycine to support neonatal growth, development, and survival. The oxidation of hydroxyproline by mitochondrial OH-POX generates reactive oxygen species (ROS). Enhanced ROS production contributes to the regulation of oxidative defense, apoptosis, angiogenesis, tumorigenesis, hypoxic responses, and cell survival in animals. Although dietary hydroxyproline enters the portal circulation, its utilization by the portal-drained viscera is unknown. Pathways for hydroxyproline metabolism and their regulation at the molecular, cellular, and whole-body levels remain to be defined. Furthermore, the mechanisms responsible for hydroxyproline-derived ROS and related metabolites to induce cell survival or apoptosis are unknown. Interorgan metabolism of hydroxyproline (including synthesis, catabolism, and flux) in animals must be quantified using isotope technologies. Efforts should also be directed toward studying dietary, hormonal, and epigenetic regulation of OH-POX expression at transcriptional and translational levels. Another emerging research need is to understand the roles of cellular redox and signaling networks involving both ROS and Δ

Identifiants

pubmed: 28934858
doi: 10.1089/ars.2017.7338
doi:

Substances chimiques

Hydroxyproline RMB44WO89X

Types de publication

Journal Article Research Support, Non-U.S. Gov't Review

Langues

eng

Sous-ensembles de citation

IM

Pagination

674-682

Auteurs

Zhenlong Wu (Z)

1 State Key Laboratory of Animal Nutrition, China Agricultural University , Beijing, China .

Yongqing Hou (Y)

2 Hubei Collaborative Innovation Center for Animal Nutrition and Feed Safety, Hubei Key Laboratory of Animal Nutrition and Feed Science, Wuhan Polytechnic University , Wuhan, China .

Zhaolai Dai (Z)

1 State Key Laboratory of Animal Nutrition, China Agricultural University , Beijing, China .

Chien-An A Hu (CA)

2 Hubei Collaborative Innovation Center for Animal Nutrition and Feed Safety, Hubei Key Laboratory of Animal Nutrition and Feed Science, Wuhan Polytechnic University , Wuhan, China .
3 Department of Biochemistry and Molecular Biology, University of New Mexico , Health Sciences Center, Albuquerque, New Mexico .

Guoyao Wu (G)

1 State Key Laboratory of Animal Nutrition, China Agricultural University , Beijing, China .
2 Hubei Collaborative Innovation Center for Animal Nutrition and Feed Safety, Hubei Key Laboratory of Animal Nutrition and Feed Science, Wuhan Polytechnic University , Wuhan, China .
4 Department of Animal Science, Texas A&M University , College Station, Texas.

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Classifications MeSH