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AluY-mediated germline deletion, duplication and somatic stem cell reversion in UBE2T defines a new subtype of Fanconi anemia

Fanconi anemia (FA) is a rare inherited disorder clinically characterized by congenital malformations, progressive bone marrow failure and cancer susceptibility. At the cellular level, FA is associated with hypersensitivity to DNA-crosslinking genotoxins. Eight of 17 known FA genes assemble the FA E...

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Autores principales: Virts, Elizabeth L., Jankowska, Anna, Mackay, Craig, Glaas, Marcel F., Wiek, Constanze, Kelich, Stephanie L., Lottmann, Nadine, Kennedy, Felicia M., Marchal, Christophe, Lehnert, Erik, Scharf, Rüdiger E., Dufour, Carlo, Lanciotti, Marina, Farruggia, Piero, Santoro, Alessandra, Savasan, Süreyya, Scheckenbach, Kathrin, Schipper, Jörg, Wagenmann, Martin, Lewis, Todd, Leffak, Michael, Farlow, Janice L., Foroud, Tatiana M., Honisch, Ellen, Niederacher, Dieter, Chakraborty, Sujata C., Vance, Gail H., Pruss, Dmitry, Timms, Kirsten M., Lanchbury, Jerry S., Alpi, Arno F., Hanenberg, Helmut
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4550815/
https://www.ncbi.nlm.nih.gov/pubmed/26085575
http://dx.doi.org/10.1093/hmg/ddv227
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author Virts, Elizabeth L.
Jankowska, Anna
Mackay, Craig
Glaas, Marcel F.
Wiek, Constanze
Kelich, Stephanie L.
Lottmann, Nadine
Kennedy, Felicia M.
Marchal, Christophe
Lehnert, Erik
Scharf, Rüdiger E.
Dufour, Carlo
Lanciotti, Marina
Farruggia, Piero
Santoro, Alessandra
Savasan, Süreyya
Scheckenbach, Kathrin
Schipper, Jörg
Wagenmann, Martin
Lewis, Todd
Leffak, Michael
Farlow, Janice L.
Foroud, Tatiana M.
Honisch, Ellen
Niederacher, Dieter
Chakraborty, Sujata C.
Vance, Gail H.
Pruss, Dmitry
Timms, Kirsten M.
Lanchbury, Jerry S.
Alpi, Arno F.
Hanenberg, Helmut
author_facet Virts, Elizabeth L.
Jankowska, Anna
Mackay, Craig
Glaas, Marcel F.
Wiek, Constanze
Kelich, Stephanie L.
Lottmann, Nadine
Kennedy, Felicia M.
Marchal, Christophe
Lehnert, Erik
Scharf, Rüdiger E.
Dufour, Carlo
Lanciotti, Marina
Farruggia, Piero
Santoro, Alessandra
Savasan, Süreyya
Scheckenbach, Kathrin
Schipper, Jörg
Wagenmann, Martin
Lewis, Todd
Leffak, Michael
Farlow, Janice L.
Foroud, Tatiana M.
Honisch, Ellen
Niederacher, Dieter
Chakraborty, Sujata C.
Vance, Gail H.
Pruss, Dmitry
Timms, Kirsten M.
Lanchbury, Jerry S.
Alpi, Arno F.
Hanenberg, Helmut
author_sort Virts, Elizabeth L.
collection PubMed
description Fanconi anemia (FA) is a rare inherited disorder clinically characterized by congenital malformations, progressive bone marrow failure and cancer susceptibility. At the cellular level, FA is associated with hypersensitivity to DNA-crosslinking genotoxins. Eight of 17 known FA genes assemble the FA E3 ligase complex, which catalyzes monoubiquitination of FANCD2 and is essential for replicative DNA crosslink repair. Here, we identify the first FA patient with biallelic germline mutations in the ubiquitin E2 conjugase UBE2T. Both mutations were aluY-mediated: a paternal deletion and maternal duplication of exons 2–6. These loss-of-function mutations in UBE2T induced a cellular phenotype similar to biallelic defects in early FA genes with the absence of FANCD2 monoubiquitination. The maternal duplication produced a mutant mRNA that could encode a functional protein but was degraded by nonsense-mediated mRNA decay. In the patient's hematopoietic stem cells, the maternal allele with the duplication of exons 2–6 spontaneously reverted to a wild-type allele by monoallelic recombination at the duplicated aluY repeat, thereby preventing bone marrow failure. Analysis of germline DNA of 814 normal individuals and 850 breast cancer patients for deletion or duplication of UBE2T exons 2–6 identified the deletion in only two controls, suggesting aluY-mediated recombinations within the UBE2T locus are rare and not associated with an increased breast cancer risk. Finally, a loss-of-function germline mutation in UBE2T was detected in a high-risk breast cancer patient with wild-type BRCA1/2. Cumulatively, we identified UBE2T as a bona fide FA gene (FANCT) that also may be a rare cancer susceptibility gene.
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spelling pubmed-45508152015-08-28 AluY-mediated germline deletion, duplication and somatic stem cell reversion in UBE2T defines a new subtype of Fanconi anemia Virts, Elizabeth L. Jankowska, Anna Mackay, Craig Glaas, Marcel F. Wiek, Constanze Kelich, Stephanie L. Lottmann, Nadine Kennedy, Felicia M. Marchal, Christophe Lehnert, Erik Scharf, Rüdiger E. Dufour, Carlo Lanciotti, Marina Farruggia, Piero Santoro, Alessandra Savasan, Süreyya Scheckenbach, Kathrin Schipper, Jörg Wagenmann, Martin Lewis, Todd Leffak, Michael Farlow, Janice L. Foroud, Tatiana M. Honisch, Ellen Niederacher, Dieter Chakraborty, Sujata C. Vance, Gail H. Pruss, Dmitry Timms, Kirsten M. Lanchbury, Jerry S. Alpi, Arno F. Hanenberg, Helmut Hum Mol Genet Articles Fanconi anemia (FA) is a rare inherited disorder clinically characterized by congenital malformations, progressive bone marrow failure and cancer susceptibility. At the cellular level, FA is associated with hypersensitivity to DNA-crosslinking genotoxins. Eight of 17 known FA genes assemble the FA E3 ligase complex, which catalyzes monoubiquitination of FANCD2 and is essential for replicative DNA crosslink repair. Here, we identify the first FA patient with biallelic germline mutations in the ubiquitin E2 conjugase UBE2T. Both mutations were aluY-mediated: a paternal deletion and maternal duplication of exons 2–6. These loss-of-function mutations in UBE2T induced a cellular phenotype similar to biallelic defects in early FA genes with the absence of FANCD2 monoubiquitination. The maternal duplication produced a mutant mRNA that could encode a functional protein but was degraded by nonsense-mediated mRNA decay. In the patient's hematopoietic stem cells, the maternal allele with the duplication of exons 2–6 spontaneously reverted to a wild-type allele by monoallelic recombination at the duplicated aluY repeat, thereby preventing bone marrow failure. Analysis of germline DNA of 814 normal individuals and 850 breast cancer patients for deletion or duplication of UBE2T exons 2–6 identified the deletion in only two controls, suggesting aluY-mediated recombinations within the UBE2T locus are rare and not associated with an increased breast cancer risk. Finally, a loss-of-function germline mutation in UBE2T was detected in a high-risk breast cancer patient with wild-type BRCA1/2. Cumulatively, we identified UBE2T as a bona fide FA gene (FANCT) that also may be a rare cancer susceptibility gene. Oxford University Press 2015-09-15 2015-06-17 /pmc/articles/PMC4550815/ /pubmed/26085575 http://dx.doi.org/10.1093/hmg/ddv227 Text en © The Author 2015. Published by Oxford University Press. http://creativecommons.org/licenses/by/4.0/ This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted reuse, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Articles
Virts, Elizabeth L.
Jankowska, Anna
Mackay, Craig
Glaas, Marcel F.
Wiek, Constanze
Kelich, Stephanie L.
Lottmann, Nadine
Kennedy, Felicia M.
Marchal, Christophe
Lehnert, Erik
Scharf, Rüdiger E.
Dufour, Carlo
Lanciotti, Marina
Farruggia, Piero
Santoro, Alessandra
Savasan, Süreyya
Scheckenbach, Kathrin
Schipper, Jörg
Wagenmann, Martin
Lewis, Todd
Leffak, Michael
Farlow, Janice L.
Foroud, Tatiana M.
Honisch, Ellen
Niederacher, Dieter
Chakraborty, Sujata C.
Vance, Gail H.
Pruss, Dmitry
Timms, Kirsten M.
Lanchbury, Jerry S.
Alpi, Arno F.
Hanenberg, Helmut
AluY-mediated germline deletion, duplication and somatic stem cell reversion in UBE2T defines a new subtype of Fanconi anemia
title AluY-mediated germline deletion, duplication and somatic stem cell reversion in UBE2T defines a new subtype of Fanconi anemia
title_full AluY-mediated germline deletion, duplication and somatic stem cell reversion in UBE2T defines a new subtype of Fanconi anemia
title_fullStr AluY-mediated germline deletion, duplication and somatic stem cell reversion in UBE2T defines a new subtype of Fanconi anemia
title_full_unstemmed AluY-mediated germline deletion, duplication and somatic stem cell reversion in UBE2T defines a new subtype of Fanconi anemia
title_short AluY-mediated germline deletion, duplication and somatic stem cell reversion in UBE2T defines a new subtype of Fanconi anemia
title_sort aluy-mediated germline deletion, duplication and somatic stem cell reversion in ube2t defines a new subtype of fanconi anemia
topic Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4550815/
https://www.ncbi.nlm.nih.gov/pubmed/26085575
http://dx.doi.org/10.1093/hmg/ddv227
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