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The Fanconi Anemia Pathway Maintains Genome Stability by Coordinating Replication and Transcription.
Schwab, Rebekka A; Nieminuszczy, Jadwiga; Shah, Fenil; Langton, Jamie; Lopez Martinez, David; Liang, Chih-Chao; Cohn, Martin A; Gibbons, Richard J; Deans, Andrew J; Niedzwiedz, Wojciech.
Afiliación
  • Schwab RA; Department of Oncology, Weatherall Institute of Molecular Medicine, University of Oxford, John Radcliffe Hospital, Oxford OX3 9DS, UK.
  • Nieminuszczy J; Department of Oncology, Weatherall Institute of Molecular Medicine, University of Oxford, John Radcliffe Hospital, Oxford OX3 9DS, UK.
  • Shah F; Genome Stability Unit, St. Vincent's Institute, Fitzroy, VIC 3065, Australia.
  • Langton J; Department of Oncology, Weatherall Institute of Molecular Medicine, University of Oxford, John Radcliffe Hospital, Oxford OX3 9DS, UK.
  • Lopez Martinez D; Department of Biochemistry, University of Oxford, Oxford OX1 3QU, UK.
  • Liang CC; Department of Biochemistry, University of Oxford, Oxford OX1 3QU, UK.
  • Cohn MA; Department of Biochemistry, University of Oxford, Oxford OX1 3QU, UK.
  • Gibbons RJ; Medical Research Council Molecular Haematology Unit, Weatherall Institute of Molecular Medicine, University of Oxford, John Radcliffe Hospital, Oxford OX3 9DS, UK.
  • Deans AJ; Genome Stability Unit, St. Vincent's Institute, Fitzroy, VIC 3065, Australia.
  • Niedzwiedz W; Department of Oncology, Weatherall Institute of Molecular Medicine, University of Oxford, John Radcliffe Hospital, Oxford OX3 9DS, UK. Electronic address: wojciech.niedzwiedz@imm.ox.ac.uk.
Mol Cell ; 60(3): 351-61, 2015 Nov 05.
Article en En | MEDLINE | ID: mdl-26593718
DNA replication stress can cause chromosomal instability and tumor progression. One key pathway that counteracts replication stress and promotes faithful DNA replication consists of the Fanconi anemia (FA) proteins. However, how these proteins limit replication stress remains largely elusive. Here we show that conflicts between replication and transcription activate the FA pathway. Inhibition of transcription or enzymatic degradation of transcription-associated R-loops (DNA:RNA hybrids) suppresses replication fork arrest and DNA damage occurring in the absence of a functional FA pathway. Furthermore, we show that simple aldehydes, known to cause leukemia in FA-deficient mice, induce DNA:RNA hybrids in FA-depleted cells. Finally, we demonstrate that the molecular mechanism by which the FA pathway limits R-loop accumulation requires FANCM translocase activity. Failure to activate a response to physiologically occurring DNA:RNA hybrids may critically contribute to the heightened cancer predisposition and bone marrow failure of individuals with mutated FA proteins.
Asunto(s)

Texto completo: 1 Colección: 01-internacional Banco de datos: MEDLINE Asunto principal: Daño del ADN / ADN Helicasas / Inestabilidad Genómica / Replicación del ADN / Proteínas del Grupo de Complementación de la Anemia de Fanconi / Ácidos Nucleicos Heterodúplex Límite: Animals / Humans Idioma: En Revista: Mol Cell Asunto de la revista: BIOLOGIA MOLECULAR Año: 2015 Tipo del documento: Article

Texto completo: 1 Colección: 01-internacional Banco de datos: MEDLINE Asunto principal: Daño del ADN / ADN Helicasas / Inestabilidad Genómica / Replicación del ADN / Proteínas del Grupo de Complementación de la Anemia de Fanconi / Ácidos Nucleicos Heterodúplex Límite: Animals / Humans Idioma: En Revista: Mol Cell Asunto de la revista: BIOLOGIA MOLECULAR Año: 2015 Tipo del documento: Article