Artículo
Unravelling the Photoprotection Capacity of Resveratrol on Histidine Oxidation
Fecha de publicación:
11/2021
Editorial:
Multidisciplinary Digital Publishing Institute
Revista:
Photochem
ISSN:
2673-7256
Idioma:
Inglés
Tipo de recurso:
Artículo publicado
Clasificación temática:
Resumen
Exposure to sun radiation causes great oxidative stress and activates a numerous of defense mechanisms in living systems, such as the synthesis of antioxidants. Resveratrol (RSV), a naturally occurring stilbene molecule, has antioxidant properties and is synthesized in large amounts when plants are under high oxidative stress. Likewise, under UV and visible radiation, biomolecules are oxidized, losing their physiological properties and, therefore, avoiding the harmful effects of solar radiation is crucial in order to preserve the functionality of cellular components. In proteins, one essential component that is often susceptible to degradation is the amino acid histidine (His), which can be modified via several oxidizing mechanisms. In this article, we evaluate the photoprotection capacity of RSV in photosensitized oxidation of His, which is initiated with a one-electron transfer reaction, yielding the His radical cation (His•+). The photoprotective properties of RSV are evaluated using kinetics analysis during steady-state irradiation and laser flash photolysis experiments. The experimental results reveal that the presence of RSV in the solution causes an evident decrease of the His consumption initial rates as a result of a reaction between His•+ and RSV that recovers the amino acid. In addition, we conclude that during its antioxidant action, RSV is consumed being a sacrificial antioxidant.
Palabras clave:
HISTIDINE
,
PHOTOSENSITIZATION
,
RESVERATROL
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Articulos(INIFTA)
Articulos de INST.DE INV.FISICOQUIMICAS TEORICAS Y APLIC.
Articulos de INST.DE INV.FISICOQUIMICAS TEORICAS Y APLIC.
Citación
Neyra Recky, Jael Rhode; Dantola, Maria Laura; Lorente, Carolina; Unravelling the Photoprotection Capacity of Resveratrol on Histidine Oxidation; Multidisciplinary Digital Publishing Institute; Photochem; 1; 2; 11-2021; 209-219
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