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- W2272287940 endingPage "1172S" @default.
- W2272287940 startingPage "1163S" @default.
- W2272287940 abstract "The neurobiological functions of ascorbate have both intra- and extracellular sites of action. Intracellularly, it participates predominantly in enzymic and transport reactions for neurotransmitter and hormone biosynthesis. Ascorbate is the cofáctor for the dopamineβ-hydroxylase and peptidylglycineα-amidating monooxygenase systems, which catalyze the synthesis of norepinephrine and a variety of a-amidated peptides, respectively. The localization of these enzymes within the neurotransmitter- or hormone-containing storage vesicle requires a system for the constant regeneration of ascorbate to the reduced form. In fact, ascorbate participates in its own regeneration as a component of the vesicular electron-transport system. In addition to the roles of ascorbate in messenger synthesis, it is secreted from cells from different subcellular compartments. The extracellular role(s) of ascorbate are still unknown, although its interaction with and modification of plasma membrane proteins suggests some modulatory function." @default.
- W2272287940 created "2016-06-24" @default.
- W2272287940 creator A5014207858 @default.
- W2272287940 creator A5050623806 @default.
- W2272287940 creator A5086500937 @default.
- W2272287940 date "1991-12-01" @default.
- W2272287940 modified "2023-09-26" @default.
- W2272287940 title "Multicompartmental secretion of ascorbate and its dual role in dopamineβ-hydroxylation" @default.
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- W2272287940 doi "https://doi.org/10.1093/ajcn/54.6.1163s" @default.
- W2272287940 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/1962565" @default.
- W2272287940 hasPublicationYear "1991" @default.
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