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1.
Cell Rep ; 42(8): 112930, 2023 08 29.
Artículo en Inglés | MEDLINE | ID: mdl-37540596

RESUMEN

The somatic mutations found in a cancer genome are imprinted by different mutational processes. Each process exhibits a characteristic mutational signature, which can be affected by the genome architecture. However, the interplay between mutational signatures and topographical genomic features has not been extensively explored. Here, we integrate mutations from 5,120 whole-genome-sequenced tumors from 40 cancer types with 516 topographical features from ENCODE to evaluate the effect of nucleosome occupancy, histone modifications, CTCF binding, replication timing, and transcription/replication strand asymmetries on the cancer-specific accumulation of mutations from distinct mutagenic processes. Most mutational signatures are affected by topographical features, with signatures of related etiologies being similarly affected. Certain signatures exhibit periodic behaviors or cancer-type-specific enrichments/depletions near topographical features, revealing further information about the processes that imprinted them. Our findings, disseminated via the COSMIC (Catalog of Somatic Mutations in Cancer) signatures database, provide a comprehensive online resource for exploring the interactions between mutational signatures and topographical features across human cancer.


Asunto(s)
Neoplasias , Humanos , Mutación/genética , Neoplasias/genética , Genómica , Secuencia de Bases , Genoma Humano
3.
Nat Commun ; 14(1): 276, 2023 01 17.
Artículo en Inglés | MEDLINE | ID: mdl-36650165

RESUMEN

Ultraviolet A light is commonly emitted by UV-nail polish dryers with recent reports suggesting that long-term use may increase the risk for developing skin cancer. However, no experimental evaluation has been conducted to reveal the effect of radiation emitted by UV-nail polish dryers on mammalian cells. Here, we show that irradiation by a UV-nail polish dryer causes high levels of reactive oxygen species, consistent with 8-oxo-7,8-dihydroguanine damage and mitochondrial dysfunction. Analysis of somatic mutations reveals a dose-dependent increase of C:G>A:T substitutions in irradiated samples with mutagenic patterns similar to mutational signatures previously attributed to reactive oxygen species. In summary, this study demonstrates that radiation emitted by UV-nail polish dryers can both damage DNA and permanently engrave mutations on the genomes of primary mouse embryonic fibroblasts, human foreskin fibroblasts, and human epidermal keratinocytes.


Asunto(s)
Daño del ADN , Fibroblastos , Rayos Ultravioleta , Animales , Humanos , Ratones , Queratinocitos/efectos de la radiación , Mamíferos , Mutación/efectos de la radiación , Especies Reactivas de Oxígeno/metabolismo , Rayos Ultravioleta/efectos adversos , Uñas
4.
Genome Res ; 29(4): 521-531, 2019 04.
Artículo en Inglés | MEDLINE | ID: mdl-30846532

RESUMEN

Humans are frequently exposed to acrylamide, a probable human carcinogen found in commonplace sources such as most heated starchy foods or tobacco smoke. Prior evidence has shown that acrylamide causes cancer in rodents, yet epidemiological studies conducted to date are limited and, thus far, have yielded inconclusive data on association of human cancers with acrylamide exposure. In this study, we experimentally identify a novel and unique mutational signature imprinted by acrylamide through the effects of its reactive metabolite glycidamide. We next show that the glycidamide mutational signature is found in a full one-third of approximately 1600 tumor genomes corresponding to 19 human tumor types from 14 organs. The highest enrichment of the glycidamide signature was observed in the cancers of the lung (88% of the interrogated tumors), liver (73%), kidney (>70%), bile duct (57%), cervix (50%), and, to a lesser extent, additional cancer types. Overall, our study reveals an unexpectedly extensive contribution of acrylamide-associated mutagenesis to human cancers.


Asunto(s)
Acrilamidas/toxicidad , Carcinogénesis/genética , Exposición a Riesgos Ambientales , Mutágenos/toxicidad , Mutación , Neoplasias/genética , Animales , Carcinogénesis/inducido químicamente , Células Cultivadas , Compuestos Epoxi/toxicidad , Genoma Humano , Humanos , Ratones , Neoplasias/inducido químicamente , Proteína p53 Supresora de Tumor/genética
5.
Basic Clin Pharmacol Toxicol ; 121 Suppl 3: 16-22, 2017 Sep.
Artículo en Inglés | MEDLINE | ID: mdl-27754614

RESUMEN

Mutation spectra in cancer genomes provide information on the disease aetiology and the causality underlying the evolution and progression of cancer. Genome-wide mutation patterns reflect the effects of mutagenic insults and can thus reveal past carcinogen-specific exposures and inform hypotheses on the causative factors for specific cancer types. To identify mutation profiles in human cancers, single-gene studies were first employed, focusing mainly on the tumour suppressor gene TP53. Furthermore, experimental studies had been developed in model organisms. They allowed the characterization of the mutation patterns specific to known human carcinogens, such as polycyclic aromatic hydrocarbons or ultraviolet light. With the advent of massively parallel sequencing, mutation landscapes become revealed on a large scale, in human primary tumours and in experimental models, enabling deeper investigations of the functional and structural impact of mutations on the genome, including exposure-specific base-change fingerprints known as mutational signatures. These studies can now accelerate the identification of aetiological factors, contribute to carcinogen evaluation and classification and ultimately inform cancer prevention measures.


Asunto(s)
Carcinógenos/toxicidad , Exposición a Riesgos Ambientales/efectos adversos , Mutágenos/toxicidad , Neoplasias/genética , Animales , Modelos Animales de Enfermedad , Genes Reporteros/genética , Ingeniería Genética/métodos , Secuenciación de Nucleótidos de Alto Rendimiento , Humanos , Modelos Genéticos , Pruebas de Mutagenicidad/métodos , Mutación , Análisis de Secuencia de ADN/métodos
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