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Título

Dyskerin mutations present in Dyskeratosis Congenita patients increase oxidative stress and DNA damaga signalling in Dictyostelium discoideum

AutorRodriguez-Centeno, Javier CSIC ORCID; Perona Abellón, Rosario CSIC ORCID; Sastre, Leandro CSIC ORCID
Palabras claveDictyostelium
Dyskerin
Dyskeratosis congenita
Telomere
Telomere biology disorder
DNA damage
Oxidative stress
Pseudouridylation
Fecha de publicación2019
EditorMultidisciplinary Digital Publishing Institute
CitaciónCells 8(11): 1406 (2019)
ResumenDyskerin is a protein involved in the formation of small nucleolar and small Cajal body ribonucleoproteins. These complexes participate in RNA pseudouridylation and are also components of the telomerase complex required for telomere elongation. Dyskerin mutations cause a rare disease, X-linked dyskeratosis congenita, with no curative treatment. The social amoeba Dictyostelium discoideum contains a gene coding for a dyskerin homologous protein. In this article D. discoideum mutant strains that have mutations corresponding to mutations found in dyskeratosis congenita patients are described. The phenotype of the mutant strains has been studied and no alterations were observed in pseudouridylation activity and telomere structure. Mutant strains showed increased proliferation on liquid culture but reduced growth feeding on bacteria. The results obtained indicated the existence of increased DNA damage response and reactive oxygen species, as also reported in human Dyskeratosis congenita cells and some other disease models. These data, together with the haploid character of D. discoideum vegetative cells, that resemble the genomic structure of the human dyskerin gene, located in the X chromosome, support the conclusion that D. discoideum can be a good model system for the study of this disease.
Descripción© 2019 by the authors.
Versión del editorhttp://dx.doi.org/10.3390/cells8111406
URIhttp://hdl.handle.net/10261/206524
DOI10.3390/cells8111406
ISSN2073-4409
E-ISSN2073-4409
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