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Saturation genome editing of BRCA1 across cell types accurately resolves cancer risk

Тип публикацииPosted Content
Дата публикации2025-08-16
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ABSTRACT

Germline pathogenic BRCA1 variants predispose women to breast and ovarian cancer. Despite accumulation of functional evidence for variants in BRCA1 , over half of reported single-nucleotide variants (SNVs) lack a definitive clinical interpretation. Furthermore, the extent to which variant effects are consistent across cell types remains largely unexplored. Here, we performed saturation genome editing (SGE) of BRCA1 in HAP1 cells to score 4,113 variants not previously assayed. Additionally, we developed a new SGE assay in human mammary epithelial cells (HMECs), allowing effects of variants to be compared across cell lines, drug treatments, and genetic backgrounds. We identify 538 variants impacting function via diverse mechanisms, including impairment of the BRCA1–PALB2 interaction and disruption of splicing, transcription, and translation. Function scores from experiments in HAP1 discriminate known pathogenic and benign variants with near-perfect accuracy. Intriguingly, however, nearly half of variants impacting function in HAP1 were found to be neutral when assayed in HMECs. We show that discordantly scored variants are hypomorphic and confer intermediate cancer risk. These results will be highly valuable for clinical interpretation of BRCA1 variants. Moreover, this work illustrates how revealing context-specific variant effects across cell types can enable more accurate resolution of disease risk.

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medRxiv
1 публикация, 25%
European Journal of Human Genetics
1 публикация, 25%
bioRxiv
1 публикация, 25%
npj Breast Cancer
1 публикация, 25%
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openRxiv
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Springer Nature
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Dace P. et al. Saturation genome editing of BRCA1 across cell types accurately resolves cancer risk // medRxiv. 2025.
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Dace P., Forrester N., Zanti M., Cubitt L., Terwagne C., Buckley M., van Veen E., Wilson T. S., Scaffidi P., Michailidou K., Findlay G. M. Saturation genome editing of BRCA1 across cell types accurately resolves cancer risk // medRxiv. 2025.
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TY - GENERIC
DO - 10.1101/2025.08.11.25333423
UR - http://medrxiv.org/lookup/doi/10.1101/2025.08.11.25333423
TI - Saturation genome editing of BRCA1 across cell types accurately resolves cancer risk
T2 - medRxiv
AU - Dace, Phoebe
AU - Forrester, Nicole
AU - Zanti, Maria
AU - Cubitt, Laura
AU - Terwagne, Chloé
AU - Buckley, Megan
AU - van Veen, Elke M.
AU - Wilson, Thomas Stuart
AU - Scaffidi, Paola
AU - Michailidou, Kyriaki
AU - Findlay, Gregory M
PY - 2025
DA - 2025/08/16
PB - openRxiv
ER -
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@article{2025_Dace,
author = {Phoebe Dace and Nicole Forrester and Maria Zanti and Laura Cubitt and Chloé Terwagne and Megan Buckley and Elke M. van Veen and Thomas Stuart Wilson and Paola Scaffidi and Kyriaki Michailidou and Gregory M Findlay},
title = {Saturation genome editing of BRCA1 across cell types accurately resolves cancer risk},
journal = {medRxiv},
year = {2025},
publisher = {openRxiv},
month = {aug},
url = {http://medrxiv.org/lookup/doi/10.1101/2025.08.11.25333423},
doi = {10.1101/2025.08.11.25333423}
}
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