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1.
J Biol Chem ; 294(41): 15037-15051, 2019 10 11.
Artículo en Inglés | MEDLINE | ID: mdl-31431505

RESUMEN

Activation-induced deaminase (AID) and apolipoprotein B mRNA-editing enzyme catalytic subunit (APOBEC) enzymes convert cytosines to uracils, creating signature mutations that have been used to predict sites targeted by these enzymes. Mutation-based targeting maps are distorted by the error-prone or error-free repair of these uracils and by selection pressures. To directly map uracils created by AID/APOBEC enzymes, here we used uracil-DNA glycosylase and an alkoxyamine to covalently tag and sequence uracil-containing DNA fragments (UPD-Seq). We applied this technique to the genome of repair-defective, APOBEC3A-expressing bacterial cells and created a uracilation genome map, i.e. uracilome. The peak uracilated regions were in the 5'-ends of genes and operons mainly containing tRNA genes and a few protein-coding genes. We validated these findings through deep sequencing of pulldown regions and whole-genome sequencing of independent clones. The peaks were not correlated with high transcription rates or stable RNA:DNA hybrid formation. We defined the uracilation index (UI) as the frequency of occurrence of TT in UPD-Seq reads at different original TC dinucleotides. Genome-wide UI calculation confirmed that APOBEC3A modifies cytosines in the lagging-strand template during replication and in short hairpin loops. APOBEC3A's preference for tRNA genes was observed previously in yeast, and an analysis of human tumor sequences revealed that in tumors with a high percentage of APOBEC3 signature mutations, the frequency of tRNA gene mutations was much higher than in the rest of the genome. These results identify multiple causes underlying selection of cytosines by APOBEC3A for deamination, and demonstrate the utility of UPD-Seq.


Asunto(s)
Mapeo Cromosómico , Citidina Desaminasa/metabolismo , ADN Bacteriano/genética , ADN Bacteriano/metabolismo , Genómica , Proteínas/metabolismo , Análisis de Secuencia de ADN , Uracilo/metabolismo , Secuencia de Bases , Citosina/metabolismo , Escherichia coli/genética , Humanos , Mutación , Especificidad por Sustrato , Transcripción Genética
2.
Mol Cell Biol ; 39(1)2019 01 01.
Artículo en Inglés | MEDLINE | ID: mdl-30348839

RESUMEN

Phorbol 12-myristate 13-acetate (PMA) promotes skin cancer in rodents. The mutations found in murine tumors are similar to those found in human skin cancers, and PMA promotes proliferation of human skin cells. PMA treatment of human keratinocytes increases the synthesis of APOBEC3A, an enzyme that converts cytosines in single-stranded DNA to uracil, and mutations in a variety of human cancers are attributed to APOBEC3A or APOBEC3B expression. We tested here the possibility that induction of APOBEC3A by PMA causes genomic accumulation of uracils that may lead to such mutations. When a human keratinocyte cell line was treated with PMA, both APOBEC3A and APOBEC3B gene expression increased, anti-APOBEC3A/APOBEC3B antibody bound a protein(s) in the nucleus, and nuclear extracts displayed cytosine deamination activity. Surprisingly, there was little increase in genomic uracils in PMA-treated wild-type or uracil repair-defective cells. In contrast, cells transfected with a plasmid expressing APOBEC3A acquired more genomic uracils. Unexpectedly, PMA treatment, but not APOBEC3A plasmid transfection, caused a cessation in cell growth. Hence, a reduction in single-stranded DNA at replication forks may explain the inability of PMA-induced APOBEC3A/APOBEC3B to increase genomic uracils. These results suggest that the proinflammatory PMA is unlikely to promote extensive APOBEC3A/APOBEC3B-mediated cytosine deaminations in human keratinocytes.


Asunto(s)
Citidina Desaminasa/efectos de los fármacos , Antígenos de Histocompatibilidad Menor/efectos de los fármacos , Ésteres del Forbol/farmacología , Proteínas/efectos de los fármacos , Uracilo/metabolismo , Carcinógenos/metabolismo , Línea Celular , Transformación Celular Neoplásica/genética , Citosina/metabolismo , ADN de Cadena Simple/efectos de los fármacos , Genómica , Humanos , Queratinocitos/metabolismo , Mutagénesis/efectos de los fármacos , Neoplasias/genética
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