MC1R Variant Allele Effects on UVR-Induced Phosphorylation of p38, p53, and DDB2 Repair Protein Responses in Melanocytic Cells in Culture
doi: 10.1038/jid.2011.473
pmid: 22336944
MC1R Variant Allele Effects on UVR-Induced Phosphorylation of p38, p53, and DDB2 Repair Protein Responses in Melanocytic Cells in Culture
Variant alleles of the human melanocortin 1 receptor (MC1R) reduce the ability of melanocytes to produce the dark pigment eumelanin, with R alleles being most deficient. Cultured melanocytes of MC1R R/R variant genotype give reduced responses to [Nle(4), D-Phe(7)]α-melanocyte-stimulating hormone (NDP-MSH) ligand stimulation and lower levels of DNA repair than MC1R wild-type strains. p38 controls xeroderma pigmentosum (XP)-C recruitment to DNA damage sites through regulating ubiquitylation of the DNA damage-binding protein 2 (DDB2) protein, and p53 is implicated in the nuclear excision repair process through its regulation of XP-C and DDB2 protein expression. We report the effects of MC1R ligand treatment and UVR exposure on phosphorylation of p38 and p53, and DDB2 protein expression in MC1R variant strains. Wild-type MC1R melanocyte strains grown together with keratinocytes in coculture, when treated with NDP-MSH and exposed to UVR, gave synergistic activation of p38 and p53 phosphorylation, and were not replicated by R/R variant melanocytes, which have lower basal levels of phosphorylated forms of p38. Minor increases in p38 phosphorylation status in R/R variant melanocyte cocultures could be attributed to the keratinocytes alone. We also found that MC1R wild-type strains regulate DDB2 protein levels through p38, but MC1R R/R variant melanocytes do not. This work confirms the important functional role that the MC1R receptor plays in UVR stress-induced DNA repair.
- University of Quensland Australia
- University of Queensland Australia
- Terrestrial Ecosystem Research Network Australia
- University of Queensland Australia
- THE UNIVERSITY OF QUEENSLAND Australia
Keratinocytes, 1303 Biochemistry, DNA Repair, Ultraviolet Rays, Ultraviolet-Radiation, Dermatology, Biochemistry, p38 Mitogen-Activated Protein Kinases, 1307 Cell Biology, 2708 Dermatology, 1312 Molecular Biology, Humans, Phosphorylation, Molecular Biology, Alleles, Cells, Cultured, 500, Normal Human Keratinocytes, Cell Biology, Damage Recognition, Coculture Techniques, Dna-Binding-Protein, DNA-Binding Proteins, alpha-MSH, Nucleotide Excision-Repair, Melanocytes, Tumor Suppressor Protein p53, Receptor, Melanocortin, Type 1, Signal Transduction
Keratinocytes, 1303 Biochemistry, DNA Repair, Ultraviolet Rays, Ultraviolet-Radiation, Dermatology, Biochemistry, p38 Mitogen-Activated Protein Kinases, 1307 Cell Biology, 2708 Dermatology, 1312 Molecular Biology, Humans, Phosphorylation, Molecular Biology, Alleles, Cells, Cultured, 500, Normal Human Keratinocytes, Cell Biology, Damage Recognition, Coculture Techniques, Dna-Binding-Protein, DNA-Binding Proteins, alpha-MSH, Nucleotide Excision-Repair, Melanocytes, Tumor Suppressor Protein p53, Receptor, Melanocortin, Type 1, Signal Transduction
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