Repositorio Dspace

Melanoma-associated melanocortin 1 receptor variants confer redox signaling-dependent protection against oxidative DNA damage

Mostrar el registro sencillo del ítem

dc.contributor.author Castejon-Grinan, María
dc.contributor.author Cerdido, Sonia
dc.contributor.author Sánchez-Beltrán, José
dc.contributor.author Lambertos, Ana
dc.contributor.author Abrisqueta, Marta
dc.contributor.author Herraiz, Cecilia
dc.contributor.author Jiménez-Cervantes, Celia
dc.contributor.author García-Borrón, José-Carlos
dc.date.accessioned 2025-12-03T11:11:27Z
dc.date.available 2025-12-03T11:11:27Z
dc.date.issued 2024-06
dc.identifier.citation Castejón-Griñán M, Cerdido S, Sánchez-Beltrán J, Lambertos A, Abrisqueta M, Herraiz C, et al. Melanoma-associated melanocortin 1 receptor variants confer redox signaling-dependent protection against oxidative DNA damage. Redox Biology. junio de 2024;72:103135.
dc.identifier.issn 2213-2317
dc.identifier.uri https://sms.carm.es/ricsmur/handle/123456789/22924
dc.description.abstract Cutaneous melanoma, a lethal skin cancer, arises from malignant transformation of melanocytes. Solar ultraviolet radiation (UVR) is a major environmental risk factor for melanoma since its interaction with the skin generates DNA damage, either directly or indirectly via oxidative stress. Pheomelanin pigments exacerbate oxidative stress in melanocytes by UVR-dependent and independent mechanisms. Thus, oxidative stress is considered to contribute to melanomagenesis, particularly in people with pheomelanic pigmentation. The melanocortin 1 receptor gene (MC1R) is a major melanoma susceptibility gene. Frequent MC1R variants (varMC1R) associated with fair skin and red or yellow hair color display hypomorphic signaling to the cAMP pathway and are associated with higher melanoma risk. This association is thought to be due to production of photosensitizing pheomelanins as well as deficient induction of DNA damage repair downstream of varMC1R. However, the data on modulation of oxidative DNA damage repair by MC1R remain scarce. We recently demonstrated that varMC1R accelerates clearance of reactive oxygen species (ROS)-induced DNA strand breaks in an AKT-dependent manner. Here we show that varMC1R also protects against ROS-dependent formation of 8-oxodG, the most frequent oxidative DNA lesion. Since the base excision repair (BER) pathway mediates clearance of these DNA lesions, we analyzed induction of BER enzymes in human melanoma cells of varMC1R genotype. Agonist-mediated activation of both wildtype (wtMC1R) and varMC1R significantly induced OGG and APE-1/Ref1, the rate-limiting BER enzymes responsible for repair of 8-oxodG. Moreover, we found that NADPH oxidase (NOX)-dependent generation of ROS was responsible for AKT activation and oxidative DNA damage repair downstream of varMC1R. These observations provide a better understanding of the functional properties of melanoma-associated MC1R alleles and may be useful for the rational development of strategies to correct defective varMC1R responses for efficient photoprotection and melanoma prevention in fair-skinned individuals.
dc.language.iso eng
dc.publisher ELSEVIER
dc.rights Atribución/Reconocimiento-NoComercial-SinDerivados 4.0 Internacional 
dc.rights.uri https://creativecommons.org/licenses/by-nc-nd/4.0
dc.subject.mesh Humans
dc.subject.mesh Cell Line, Tumor
dc.subject.mesh DNA Damage
dc.subject.mesh DNA Repair
dc.subject.mesh DNA-(Apurinic or Apyrimidinic Site) Lyase/metabolism/genetics
dc.subject.mesh Melanocytes/metabolism
dc.subject.mesh Melanoma/metabolism/genetics/pathology
dc.subject.mesh Oxidation-Reduction
dc.subject.mesh Oxidative Stress
dc.subject.mesh Reactive Oxygen Species/metabolism
dc.subject.mesh Receptor, Melanocortin, Type 1/genetics/metabolism
dc.subject.mesh Signal Transduction
dc.subject.mesh Skin Neoplasms/genetics/metabolism/pathology/prevention & control
dc.subject.mesh Ultraviolet Rays/adverse effects
dc.title Melanoma-associated melanocortin 1 receptor variants confer redox signaling-dependent protection against oxidative DNA damage
dc.type info:eu-repo/semantics/article
dc.identifier.pmid 38565069
dc.relation.publisherversion https://linkinghub.elsevier.com/retrieve/pii/S2213231724001113
dc.identifier.doi 10.1016/j.redox.2024.103135
dc.journal.title Redox Biology


Ficheros en el ítem

Este ítem aparece en la(s) siguiente(s) colección(ones)

Mostrar el registro sencillo del ítem

Atribución/Reconocimiento-NoComercial-SinDerivados 4.0 Internacional  Excepto si se señala otra cosa, la licencia del ítem se describe como Atribución/Reconocimiento-NoComercial-SinDerivados 4.0 Internacional 

Buscar en DSpace


Búsqueda avanzada

Listar

Mi cuenta