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1.
Mol Genet Genomic Med ; 6(1): 77-91, 2018 01.
Artículo en Inglés | MEDLINE | ID: mdl-29193904

RESUMEN

BACKGROUND: Fanconi anemia (FA) is a rare disorder characterized by congenital malformations, progressive bone marrow failure, and predisposition to cancer. Patients harboring X-linked FANCB pathogenic variants usually present with severe congenital malformations resembling VACTERL syndrome with hydrocephalus. METHODS: We employed the diepoxybutane (DEB) test for FA diagnosis, arrayCGH for detection of duplication, targeted capture and next-gen sequencing for defining the duplication breakpoint, PacBio sequencing of full-length FANCB aberrant transcript, FANCD2 ubiquitination and foci formation assays for the evaluation of FANCB protein function by viral transduction of FANCB-null cells with lentiviral FANCB WT and mutant expression constructs, and droplet digital PCR for quantitation of the duplication in the genomic DNA and cDNA. RESULTS: We describe here an FA-B patient with a mild phenotype. The DEB diagnostic test for FA revealed somatic mosaicism. We identified a 9154 bp intragenic duplication in FANCB, covering the first coding exon 3 and the flanking regions. A four bp homology (GTAG) present at both ends of the breakpoint is consistent with microhomology-mediated duplication mechanism. The duplicated allele gives rise to an aberrant transcript containing exon 3 duplication, predicted to introduce a stop codon in FANCB protein (p.A319*). Duplication levels in the peripheral blood DNA declined from 93% to 7.9% in the span of eleven years. Moreover, the patient fibroblasts have shown 8% of wild-type (WT) allele and his carrier mother showed higher than expected levels of WT allele (79% vs. 50%) in peripheral blood, suggesting that the duplication was highly unstable. CONCLUSION: Unlike sequence point variants, intragenic duplications are difficult to precisely define, accurately quantify, and may be very unstable, challenging the proper diagnosis. The reversion of genomic duplication to the WT allele results in somatic mosaicism and may explain the relatively milder phenotype displayed by the FA-B patient described here.


Asunto(s)
Proteínas del Grupo de Complementación de la Anemia de Fanconi/genética , Anemia de Fanconi/genética , Adolescente , Alelos , Secuencia de Bases/genética , Células Sanguíneas/metabolismo , Exones/genética , Proteínas del Grupo de Complementación de la Anemia de Fanconi/metabolismo , Fibroblastos , Duplicación de Gen/genética , Genes Ligados a X/genética , Genotipo , Humanos , Masculino , Mosaicismo , Fenotipo
2.
Radiat Res ; 177(6): 751-65, 2012 Jun.
Artículo en Inglés | MEDLINE | ID: mdl-22559204

RESUMEN

Radiation-induced bystander effects have been extensively studied at low doses, since evidence of bystander induced cell killing and other effects on unirradiated cells were found to be predominant at doses up to 0.5 Gy. Therefore, few studies have examined bystander effects induced by exposure to higher doses of radiation, such as spatially fractionated radiation (GRID) treatment. In the present study, we evaluate the ability of GRID treatment to induce changes in GRID adjacent (bystander) regions, in two different murine carcinoma cell lines following exposure to a single irradiation dose of 10 Gy. Murine SCK mammary carcinoma cells and SCCVII squamous carcinoma cells were irradiated using a brass collimator to create a GRID pattern of nine circular fields 12 mm in diameter with a center-to-center distance of 18 mm. Similar to the typical clinical implementation of GRID, this is approximately a 50:50 ratio of direct and bystander exposure. We also performed experiments by irradiating separate cultures and transferring the medium to unirradiated bystander cultures. Clonogenic survival was evaluated in both cell lines to determine the occurrence of radiation-induced bystander effects. For the purpose of our study, we have defined bystander cells as GRID adjacent cells that received approximately 1 Gy scatter dose or unirradiated cells receiving conditioned medium from irradiated cells. We observed significant bystander killing of cells adjacent to the GRID irradiated regions compared to sham treated controls. We also observed bystander killing of SCK and SCCVII cells cultured in conditioned medium obtained from cells irradiated with 10 Gy. Therefore, our results confirm the occurrence of bystander effects following exposure to a high-dose of radiation and suggest that cell-to-cell contact is not required for these effects. In addition, the gene expression profile for DNA damage and cellular stress response signaling in SCCVII cells after GRID exposure was studied. The occurrence of GRID-induced bystander gene expression changes in significant numbers of DNA damage and cellular stress response signaling genes, providing molecular evidence for possible mechanisms of bystander cell killing.


Asunto(s)
Efecto Espectador/efectos de la radiación , Carcinoma de Células Escamosas/genética , Carcinoma de Células Escamosas/patología , Fraccionamiento de la Dosis de Radiación , Regulación Neoplásica de la Expresión Génica/efectos de la radiación , Neoplasias Mamarias Experimentales/genética , Neoplasias Mamarias Experimentales/patología , Animales , Efecto Espectador/genética , Línea Celular Tumoral , Supervivencia Celular/efectos de la radiación , Daño del ADN , Relación Dosis-Respuesta en la Radiación , Dosimetría por Película , Ratones , Estrés Oxidativo/efectos de la radiación , Transducción de Señal/efectos de la radiación
3.
Mutat Res ; 676(1-2): 11-6, 2009 May 31.
Artículo en Inglés | MEDLINE | ID: mdl-19486859

RESUMEN

Many studies investigating the bystander effect have used ionizing radiation to evaluate this phenomenon, whereas very few have determined whether genotoxic chemicals are also capable of inducing this effect. Here, we show that two such chemicals, mitomycin C, a bifunctional alkylating agent and phleomycin, a glycopeptide antibiotic of the bleomycin family, cause normal human B lymphoblastoid cells to produce media soluble factors that induce a bystander effect in unexposed cells. Ionizing radiation was used in parallel experiments to verify the existence of the bystander effect in these cells. Micronuclei in Cytochalasin B-blocked binucleated cells were used as the endpoint. Conditioned media obtained from cells exposed to mitomycin C induced a 1.5-3 fold increase, while conditioned media from phleomycin induced a 1.5-4 fold increase, and conditioned media from irradiated cells induced a 2-8 fold increase in micronuclei. We conclude that the bystander effect is not restricted to ionizing radiation, suggesting it may be a part of a general cellular stress response.


Asunto(s)
Subgrupos de Linfocitos B/efectos de los fármacos , Efecto Espectador/efectos de los fármacos , Transformación Celular Neoplásica/inducido químicamente , Mitomicina/farmacología , Fleomicinas/farmacología , Subgrupos de Linfocitos B/efectos de la radiación , Efecto Espectador/efectos de la radiación , Medios de Cultivo Condicionados , Daño del ADN , Relación Dosis-Respuesta en la Radiación , Humanos , Masculino , Pruebas de Micronúcleos , Mutágenos/farmacología , Radiación Ionizante , Células Tumorales Cultivadas
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