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Homologous recombination DNA repair defects in PALB2-associated breast cancers

Mono-allelic germline pathogenic variants in the Partner And Localizer of BRCA2 (PALB2) gene predispose to a high-risk of breast cancer development, consistent with the role of PALB2 in homologous recombination (HR) DNA repair. Here, we sought to define the repertoire of somatic genetic alterations...

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Autores principales: Li, Anqi, Geyer, Felipe C., Blecua, Pedro, Lee, Ju Youn, Selenica, Pier, Brown, David N., Pareja, Fresia, Lee, Simon S. K., Kumar, Rahul, Rivera, Barbara, Bi, Rui, Piscuoglio, Salvatore, Wen, Hannah Y., Lozada, John R., Gularte-Mérida, Rodrigo, Cavallone, Luca, Rezoug, Zoulikha, Nguyen-Dumont, Tu, Peterlongo, Paolo, Tondini, Carlo, Terkelsen, Thorkild, Rønlund, Karina, Boonen, Susanne E., Mannerma, Arto, Winqvist, Robert, Janatova, Marketa, Rajadurai, Pathmanathan, Xia, Bing, Norton, Larry, Robson, Mark E., Ng, Pei-Sze, Looi, Lai-Meng, Southey, Melissa C., Weigelt, Britta, Soo-Hwang, Teo, Tischkowitz, Marc, Foulkes, William D., Reis-Filho, Jorge S.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group UK 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6687719/
https://www.ncbi.nlm.nih.gov/pubmed/31428676
http://dx.doi.org/10.1038/s41523-019-0115-9
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author Li, Anqi
Geyer, Felipe C.
Blecua, Pedro
Lee, Ju Youn
Selenica, Pier
Brown, David N.
Pareja, Fresia
Lee, Simon S. K.
Kumar, Rahul
Rivera, Barbara
Bi, Rui
Piscuoglio, Salvatore
Wen, Hannah Y.
Lozada, John R.
Gularte-Mérida, Rodrigo
Cavallone, Luca
Rezoug, Zoulikha
Nguyen-Dumont, Tu
Peterlongo, Paolo
Tondini, Carlo
Terkelsen, Thorkild
Rønlund, Karina
Boonen, Susanne E.
Mannerma, Arto
Winqvist, Robert
Janatova, Marketa
Rajadurai, Pathmanathan
Xia, Bing
Norton, Larry
Robson, Mark E.
Ng, Pei-Sze
Looi, Lai-Meng
Southey, Melissa C.
Weigelt, Britta
Soo-Hwang, Teo
Tischkowitz, Marc
Foulkes, William D.
Reis-Filho, Jorge S.
author_facet Li, Anqi
Geyer, Felipe C.
Blecua, Pedro
Lee, Ju Youn
Selenica, Pier
Brown, David N.
Pareja, Fresia
Lee, Simon S. K.
Kumar, Rahul
Rivera, Barbara
Bi, Rui
Piscuoglio, Salvatore
Wen, Hannah Y.
Lozada, John R.
Gularte-Mérida, Rodrigo
Cavallone, Luca
Rezoug, Zoulikha
Nguyen-Dumont, Tu
Peterlongo, Paolo
Tondini, Carlo
Terkelsen, Thorkild
Rønlund, Karina
Boonen, Susanne E.
Mannerma, Arto
Winqvist, Robert
Janatova, Marketa
Rajadurai, Pathmanathan
Xia, Bing
Norton, Larry
Robson, Mark E.
Ng, Pei-Sze
Looi, Lai-Meng
Southey, Melissa C.
Weigelt, Britta
Soo-Hwang, Teo
Tischkowitz, Marc
Foulkes, William D.
Reis-Filho, Jorge S.
author_sort Li, Anqi
collection PubMed
description Mono-allelic germline pathogenic variants in the Partner And Localizer of BRCA2 (PALB2) gene predispose to a high-risk of breast cancer development, consistent with the role of PALB2 in homologous recombination (HR) DNA repair. Here, we sought to define the repertoire of somatic genetic alterations in PALB2-associated breast cancers (BCs), and whether PALB2-associated BCs display bi-allelic inactivation of PALB2 and/or genomic features of HR-deficiency (HRD). Twenty-four breast cancer patients with pathogenic PALB2 germline mutations were analyzed by whole-exome sequencing (WES, n = 16) or targeted capture massively parallel sequencing (410 cancer genes, n = 8). Somatic genetic alterations, loss of heterozygosity (LOH) of the PALB2 wild-type allele, large-scale state transitions (LSTs) and mutational signatures were defined. PALB2-associated BCs were found to be heterogeneous at the genetic level, with PIK3CA (29%), PALB2 (21%), TP53 (21%), and NOTCH3 (17%) being the genes most frequently affected by somatic mutations. Bi-allelic PALB2 inactivation was found in 16 of the 24 cases (67%), either through LOH (n = 11) or second somatic mutations (n = 5) of the wild-type allele. High LST scores were found in all 12 PALB2-associated BCs with bi-allelic PALB2 inactivation sequenced by WES, of which eight displayed the HRD-related mutational signature 3. In addition, bi-allelic inactivation of PALB2 was significantly associated with high LST scores. Our findings suggest that the identification of bi-allelic PALB2 inactivation in PALB2-associated BCs is required for the personalization of HR-directed therapies, such as platinum salts and/or PARP inhibitors, as the vast majority of PALB2-associated BCs without PALB2 bi-allelic inactivation lack genomic features of HRD.
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spelling pubmed-66877192019-08-19 Homologous recombination DNA repair defects in PALB2-associated breast cancers Li, Anqi Geyer, Felipe C. Blecua, Pedro Lee, Ju Youn Selenica, Pier Brown, David N. Pareja, Fresia Lee, Simon S. K. Kumar, Rahul Rivera, Barbara Bi, Rui Piscuoglio, Salvatore Wen, Hannah Y. Lozada, John R. Gularte-Mérida, Rodrigo Cavallone, Luca Rezoug, Zoulikha Nguyen-Dumont, Tu Peterlongo, Paolo Tondini, Carlo Terkelsen, Thorkild Rønlund, Karina Boonen, Susanne E. Mannerma, Arto Winqvist, Robert Janatova, Marketa Rajadurai, Pathmanathan Xia, Bing Norton, Larry Robson, Mark E. Ng, Pei-Sze Looi, Lai-Meng Southey, Melissa C. Weigelt, Britta Soo-Hwang, Teo Tischkowitz, Marc Foulkes, William D. Reis-Filho, Jorge S. NPJ Breast Cancer Article Mono-allelic germline pathogenic variants in the Partner And Localizer of BRCA2 (PALB2) gene predispose to a high-risk of breast cancer development, consistent with the role of PALB2 in homologous recombination (HR) DNA repair. Here, we sought to define the repertoire of somatic genetic alterations in PALB2-associated breast cancers (BCs), and whether PALB2-associated BCs display bi-allelic inactivation of PALB2 and/or genomic features of HR-deficiency (HRD). Twenty-four breast cancer patients with pathogenic PALB2 germline mutations were analyzed by whole-exome sequencing (WES, n = 16) or targeted capture massively parallel sequencing (410 cancer genes, n = 8). Somatic genetic alterations, loss of heterozygosity (LOH) of the PALB2 wild-type allele, large-scale state transitions (LSTs) and mutational signatures were defined. PALB2-associated BCs were found to be heterogeneous at the genetic level, with PIK3CA (29%), PALB2 (21%), TP53 (21%), and NOTCH3 (17%) being the genes most frequently affected by somatic mutations. Bi-allelic PALB2 inactivation was found in 16 of the 24 cases (67%), either through LOH (n = 11) or second somatic mutations (n = 5) of the wild-type allele. High LST scores were found in all 12 PALB2-associated BCs with bi-allelic PALB2 inactivation sequenced by WES, of which eight displayed the HRD-related mutational signature 3. In addition, bi-allelic inactivation of PALB2 was significantly associated with high LST scores. Our findings suggest that the identification of bi-allelic PALB2 inactivation in PALB2-associated BCs is required for the personalization of HR-directed therapies, such as platinum salts and/or PARP inhibitors, as the vast majority of PALB2-associated BCs without PALB2 bi-allelic inactivation lack genomic features of HRD. Nature Publishing Group UK 2019-08-08 /pmc/articles/PMC6687719/ /pubmed/31428676 http://dx.doi.org/10.1038/s41523-019-0115-9 Text en © The Author(s) 2019 Open Access This article is licensed under a Creative Commons Attribution 4.0 International License, which permits use, sharing, adaptation, distribution and reproduction in any medium or format, as long as you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons license, and indicate if changes were made. The images or other third party material in this article are included in the article’s Creative Commons license, unless indicated otherwise in a credit line to the material. If material is not included in the article’s Creative Commons license and your intended use is not permitted by statutory regulation or exceeds the permitted use, you will need to obtain permission directly from the copyright holder. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/.
spellingShingle Article
Li, Anqi
Geyer, Felipe C.
Blecua, Pedro
Lee, Ju Youn
Selenica, Pier
Brown, David N.
Pareja, Fresia
Lee, Simon S. K.
Kumar, Rahul
Rivera, Barbara
Bi, Rui
Piscuoglio, Salvatore
Wen, Hannah Y.
Lozada, John R.
Gularte-Mérida, Rodrigo
Cavallone, Luca
Rezoug, Zoulikha
Nguyen-Dumont, Tu
Peterlongo, Paolo
Tondini, Carlo
Terkelsen, Thorkild
Rønlund, Karina
Boonen, Susanne E.
Mannerma, Arto
Winqvist, Robert
Janatova, Marketa
Rajadurai, Pathmanathan
Xia, Bing
Norton, Larry
Robson, Mark E.
Ng, Pei-Sze
Looi, Lai-Meng
Southey, Melissa C.
Weigelt, Britta
Soo-Hwang, Teo
Tischkowitz, Marc
Foulkes, William D.
Reis-Filho, Jorge S.
Homologous recombination DNA repair defects in PALB2-associated breast cancers
title Homologous recombination DNA repair defects in PALB2-associated breast cancers
title_full Homologous recombination DNA repair defects in PALB2-associated breast cancers
title_fullStr Homologous recombination DNA repair defects in PALB2-associated breast cancers
title_full_unstemmed Homologous recombination DNA repair defects in PALB2-associated breast cancers
title_short Homologous recombination DNA repair defects in PALB2-associated breast cancers
title_sort homologous recombination dna repair defects in palb2-associated breast cancers
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6687719/
https://www.ncbi.nlm.nih.gov/pubmed/31428676
http://dx.doi.org/10.1038/s41523-019-0115-9
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