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Combined Genetic and Genealogic Studies Uncover a Large BAP1 Cancer Syndrome Kindred Tracing Back Nine Generations to a Common Ancestor from the 1700s

We recently discovered an inherited cancer syndrome caused by BRCA1-Associated Protein 1 (BAP1) germline mutations, with high incidence of mesothelioma, uveal melanoma and other cancers and very high penetrance by age 55. To identify families with the BAP1 cancer syndrome, we screened patients with...

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Autores principales: Carbone, Michele, Flores, Erin G., Emi, Mitsuru, Johnson, Todd A., Tsunoda, Tatsuhiko, Behner, Dusty, Hoffman, Harriet, Hesdorffer, Mary, Nasu, Masaki, Napolitano, Andrea, Powers, Amy, Minaai, Michael, Baumann, Francine, Bryant-Greenwood, Peter, Lauk, Olivia, Kirschner, Michaela B., Weder, Walter, Opitz, Isabelle, Pass, Harvey I., Gaudino, Giovanni, Pastorino, Sandra, Yang, Haining
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4686043/
https://www.ncbi.nlm.nih.gov/pubmed/26683624
http://dx.doi.org/10.1371/journal.pgen.1005633
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author Carbone, Michele
Flores, Erin G.
Emi, Mitsuru
Johnson, Todd A.
Tsunoda, Tatsuhiko
Behner, Dusty
Hoffman, Harriet
Hesdorffer, Mary
Nasu, Masaki
Napolitano, Andrea
Powers, Amy
Minaai, Michael
Baumann, Francine
Bryant-Greenwood, Peter
Lauk, Olivia
Kirschner, Michaela B.
Weder, Walter
Opitz, Isabelle
Pass, Harvey I.
Gaudino, Giovanni
Pastorino, Sandra
Yang, Haining
author_facet Carbone, Michele
Flores, Erin G.
Emi, Mitsuru
Johnson, Todd A.
Tsunoda, Tatsuhiko
Behner, Dusty
Hoffman, Harriet
Hesdorffer, Mary
Nasu, Masaki
Napolitano, Andrea
Powers, Amy
Minaai, Michael
Baumann, Francine
Bryant-Greenwood, Peter
Lauk, Olivia
Kirschner, Michaela B.
Weder, Walter
Opitz, Isabelle
Pass, Harvey I.
Gaudino, Giovanni
Pastorino, Sandra
Yang, Haining
author_sort Carbone, Michele
collection PubMed
description We recently discovered an inherited cancer syndrome caused by BRCA1-Associated Protein 1 (BAP1) germline mutations, with high incidence of mesothelioma, uveal melanoma and other cancers and very high penetrance by age 55. To identify families with the BAP1 cancer syndrome, we screened patients with family histories of multiple mesotheliomas and melanomas and/or multiple cancers. We identified four families that shared an identical BAP1 mutation: they lived across the US and did not appear to be related. By combining family histories, molecular genetics, and genealogical approaches, we uncovered a BAP1 cancer syndrome kindred of ~80,000 descendants with a core of 106 individuals, whose members descend from a couple born in Germany in the early 1700s who immigrated to North America. Their descendants spread throughout the country with mutation carriers affected by multiple malignancies. Our data show that, once a proband is identified, extended analyses of these kindreds, using genomic and genealogical studies to identify the most recent common ancestor, allow investigators to uncover additional branches of the family that may carry BAP1 mutations. Using this knowledge, we have identified new branches of this family carrying BAP1 mutations. We have also implemented early-detection strategies that help identify cancers at early-stage, when they can be cured (melanomas) or are more susceptible to therapy (MM and other malignancies).
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spelling pubmed-46860432016-01-07 Combined Genetic and Genealogic Studies Uncover a Large BAP1 Cancer Syndrome Kindred Tracing Back Nine Generations to a Common Ancestor from the 1700s Carbone, Michele Flores, Erin G. Emi, Mitsuru Johnson, Todd A. Tsunoda, Tatsuhiko Behner, Dusty Hoffman, Harriet Hesdorffer, Mary Nasu, Masaki Napolitano, Andrea Powers, Amy Minaai, Michael Baumann, Francine Bryant-Greenwood, Peter Lauk, Olivia Kirschner, Michaela B. Weder, Walter Opitz, Isabelle Pass, Harvey I. Gaudino, Giovanni Pastorino, Sandra Yang, Haining PLoS Genet Research Article We recently discovered an inherited cancer syndrome caused by BRCA1-Associated Protein 1 (BAP1) germline mutations, with high incidence of mesothelioma, uveal melanoma and other cancers and very high penetrance by age 55. To identify families with the BAP1 cancer syndrome, we screened patients with family histories of multiple mesotheliomas and melanomas and/or multiple cancers. We identified four families that shared an identical BAP1 mutation: they lived across the US and did not appear to be related. By combining family histories, molecular genetics, and genealogical approaches, we uncovered a BAP1 cancer syndrome kindred of ~80,000 descendants with a core of 106 individuals, whose members descend from a couple born in Germany in the early 1700s who immigrated to North America. Their descendants spread throughout the country with mutation carriers affected by multiple malignancies. Our data show that, once a proband is identified, extended analyses of these kindreds, using genomic and genealogical studies to identify the most recent common ancestor, allow investigators to uncover additional branches of the family that may carry BAP1 mutations. Using this knowledge, we have identified new branches of this family carrying BAP1 mutations. We have also implemented early-detection strategies that help identify cancers at early-stage, when they can be cured (melanomas) or are more susceptible to therapy (MM and other malignancies). Public Library of Science 2015-12-18 /pmc/articles/PMC4686043/ /pubmed/26683624 http://dx.doi.org/10.1371/journal.pgen.1005633 Text en © 2015 Carbone et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Carbone, Michele
Flores, Erin G.
Emi, Mitsuru
Johnson, Todd A.
Tsunoda, Tatsuhiko
Behner, Dusty
Hoffman, Harriet
Hesdorffer, Mary
Nasu, Masaki
Napolitano, Andrea
Powers, Amy
Minaai, Michael
Baumann, Francine
Bryant-Greenwood, Peter
Lauk, Olivia
Kirschner, Michaela B.
Weder, Walter
Opitz, Isabelle
Pass, Harvey I.
Gaudino, Giovanni
Pastorino, Sandra
Yang, Haining
Combined Genetic and Genealogic Studies Uncover a Large BAP1 Cancer Syndrome Kindred Tracing Back Nine Generations to a Common Ancestor from the 1700s
title Combined Genetic and Genealogic Studies Uncover a Large BAP1 Cancer Syndrome Kindred Tracing Back Nine Generations to a Common Ancestor from the 1700s
title_full Combined Genetic and Genealogic Studies Uncover a Large BAP1 Cancer Syndrome Kindred Tracing Back Nine Generations to a Common Ancestor from the 1700s
title_fullStr Combined Genetic and Genealogic Studies Uncover a Large BAP1 Cancer Syndrome Kindred Tracing Back Nine Generations to a Common Ancestor from the 1700s
title_full_unstemmed Combined Genetic and Genealogic Studies Uncover a Large BAP1 Cancer Syndrome Kindred Tracing Back Nine Generations to a Common Ancestor from the 1700s
title_short Combined Genetic and Genealogic Studies Uncover a Large BAP1 Cancer Syndrome Kindred Tracing Back Nine Generations to a Common Ancestor from the 1700s
title_sort combined genetic and genealogic studies uncover a large bap1 cancer syndrome kindred tracing back nine generations to a common ancestor from the 1700s
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4686043/
https://www.ncbi.nlm.nih.gov/pubmed/26683624
http://dx.doi.org/10.1371/journal.pgen.1005633
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