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BRCA2 BRC missense variants disrupt RAD51-dependent DNA repair

Pathogenic mutations in the BRCA2 tumor suppressor gene predispose to breast, ovarian, pancreatic, prostate, and other cancers. BRCA2 maintains genome stability through homology-directed repair (HDR) of DNA double-strand breaks (DSBs) and replication fork protection. Nonsense or frameshift mutations...

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Autores principales: Jimenez-Sainz, Judit, Mathew, Joshua, Moore, Gemma, Lahiri, Sudipta, Garbarino, Jennifer, Eder, Joseph P, Rothenberg, Eli, Jensen, Ryan B
Formato: Online Artículo Texto
Lenguaje:English
Publicado: eLife Sciences Publications, Ltd 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9545528/
https://www.ncbi.nlm.nih.gov/pubmed/36098506
http://dx.doi.org/10.7554/eLife.79183
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author Jimenez-Sainz, Judit
Mathew, Joshua
Moore, Gemma
Lahiri, Sudipta
Garbarino, Jennifer
Eder, Joseph P
Rothenberg, Eli
Jensen, Ryan B
author_facet Jimenez-Sainz, Judit
Mathew, Joshua
Moore, Gemma
Lahiri, Sudipta
Garbarino, Jennifer
Eder, Joseph P
Rothenberg, Eli
Jensen, Ryan B
author_sort Jimenez-Sainz, Judit
collection PubMed
description Pathogenic mutations in the BRCA2 tumor suppressor gene predispose to breast, ovarian, pancreatic, prostate, and other cancers. BRCA2 maintains genome stability through homology-directed repair (HDR) of DNA double-strand breaks (DSBs) and replication fork protection. Nonsense or frameshift mutations leading to truncation of the BRCA2 protein are typically considered pathogenic; however, missense mutations resulting in single amino acid substitutions can be challenging to functionally interpret. The majority of missense mutations in BRCA2 have been classified as Variants of Uncertain Significance (VUS) with unknown functional consequences. In this study, we identified three BRCA2 VUS located within the BRC repeat region to determine their impact on canonical HDR and fork protection functions. We provide evidence that S1221P and T1980I, which map to conserved residues in the BRC2 and BRC7 repeats, compromise the cellular response to chemotherapeutics and ionizing radiation, and display deficits in fork protection. We further demonstrate biochemically that S1221P and T1980I disrupt RAD51 binding and diminish the ability of BRCA2 to stabilize RAD51-ssDNA complexes. The third variant, T1346I, located within the spacer region between BRC2 and BRC3 repeats, is fully functional. We conclude that T1346I is a benign allele, whereas S1221P and T1980I are hypomorphic disrupting the ability of BRCA2 to fully engage and stabilize RAD51 nucleoprotein filaments. Our results underscore the importance of correctly classifying BRCA2 VUS as pathogenic variants can impact both future cancer risk and guide therapy selection during cancer treatment.
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spelling pubmed-95455282022-10-08 BRCA2 BRC missense variants disrupt RAD51-dependent DNA repair Jimenez-Sainz, Judit Mathew, Joshua Moore, Gemma Lahiri, Sudipta Garbarino, Jennifer Eder, Joseph P Rothenberg, Eli Jensen, Ryan B eLife Cancer Biology Pathogenic mutations in the BRCA2 tumor suppressor gene predispose to breast, ovarian, pancreatic, prostate, and other cancers. BRCA2 maintains genome stability through homology-directed repair (HDR) of DNA double-strand breaks (DSBs) and replication fork protection. Nonsense or frameshift mutations leading to truncation of the BRCA2 protein are typically considered pathogenic; however, missense mutations resulting in single amino acid substitutions can be challenging to functionally interpret. The majority of missense mutations in BRCA2 have been classified as Variants of Uncertain Significance (VUS) with unknown functional consequences. In this study, we identified three BRCA2 VUS located within the BRC repeat region to determine their impact on canonical HDR and fork protection functions. We provide evidence that S1221P and T1980I, which map to conserved residues in the BRC2 and BRC7 repeats, compromise the cellular response to chemotherapeutics and ionizing radiation, and display deficits in fork protection. We further demonstrate biochemically that S1221P and T1980I disrupt RAD51 binding and diminish the ability of BRCA2 to stabilize RAD51-ssDNA complexes. The third variant, T1346I, located within the spacer region between BRC2 and BRC3 repeats, is fully functional. We conclude that T1346I is a benign allele, whereas S1221P and T1980I are hypomorphic disrupting the ability of BRCA2 to fully engage and stabilize RAD51 nucleoprotein filaments. Our results underscore the importance of correctly classifying BRCA2 VUS as pathogenic variants can impact both future cancer risk and guide therapy selection during cancer treatment. eLife Sciences Publications, Ltd 2022-09-13 /pmc/articles/PMC9545528/ /pubmed/36098506 http://dx.doi.org/10.7554/eLife.79183 Text en © 2022, Jimenez-Sainz et al https://creativecommons.org/licenses/by/4.0/This article is distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use and redistribution provided that the original author and source are credited.
spellingShingle Cancer Biology
Jimenez-Sainz, Judit
Mathew, Joshua
Moore, Gemma
Lahiri, Sudipta
Garbarino, Jennifer
Eder, Joseph P
Rothenberg, Eli
Jensen, Ryan B
BRCA2 BRC missense variants disrupt RAD51-dependent DNA repair
title BRCA2 BRC missense variants disrupt RAD51-dependent DNA repair
title_full BRCA2 BRC missense variants disrupt RAD51-dependent DNA repair
title_fullStr BRCA2 BRC missense variants disrupt RAD51-dependent DNA repair
title_full_unstemmed BRCA2 BRC missense variants disrupt RAD51-dependent DNA repair
title_short BRCA2 BRC missense variants disrupt RAD51-dependent DNA repair
title_sort brca2 brc missense variants disrupt rad51-dependent dna repair
topic Cancer Biology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9545528/
https://www.ncbi.nlm.nih.gov/pubmed/36098506
http://dx.doi.org/10.7554/eLife.79183
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