The Mutational Spectrum of Pre- and Post-Neoadjuvant Chemotherapy Triple-Negative Breast Cancers

Author:

Aguilar-Mahecha Adriana1,Alirezaie Najmeh2,Lafleur Josiane1,Bareke Eric2,Przybytkowski Ewa1,Lan Cathy1,Cavallone Luca1,Salem Myriam1,Pelmus Manuela3,Aleynikova Olga3,Greenwood Celia4ORCID,Lovato Amanda4,Ferrario Cristiano5,Boileau Jean-François5,Mihalcioiu Catalin6,Roy Josée-Anne7,Marcus Elizabeth8,Discepola Federico9,Majewski Jacek2,Basik Mark156ORCID

Affiliation:

1. Cancer Genomics and Translational Research Laboratory, Lady Davis Institute, Jewish General Hospital, Montreal, QC H3T 1E2, Canada

2. Department of Human Genetics, McGill University, Montreal, QC H3A 1A4, Canada

3. Department of Pathology, Jewish General Hospital, Montreal, QC H3T 1E2, Canada

4. Lady Davis Institute, Jewish General Hospital, Montreal, QC H3T 1E2, Canada

5. Department of Oncology, Jewish General Hospital, Montreal, QC H3T 1E2, Canada

6. McGill University Health Center, Montreal, QC H3A 3J1, Canada

7. Hôpital du Sacré-Cœur de Montréal, Montreal, QC H4J 1C5, Canada

8. Cook County Hospital, Chicago, IL 60612, USA

9. Department of Radiology, Jewish General Hospital, Montreal, QC H3T 1E2, Canada

Abstract

The response of triple-negative breast cancer (TNBC) patients to pre-operative (neoadjuvant chemotherapy) is a critical factor of their outcome. To determine the effects of chemotherapy on the tumor genome and to identify mutations associated with chemoresistance and sensitivity, we performed whole exome sequencing on pre/post-chemotherapy tumors and matched lymphocytes from 26 patients. We observed great inter-tumoral heterogeneity with no gene mutated recurrently in more than four tumors besides TP53. Although the degree of response to chemotherapy in residual tumors was associated with more subclonal changes during chemotherapy, there was minimal evolution between pre/post-tumors. Indeed, gene sets enriched for mutations in pre- and post-chemotherapy tumors were very similar and reflected genes involved in the biological process of neurogenesis. Somatically mutated genes present in chemosensitive tumors included COL1A2, PRMD15, APOBEC3B, PALB2 and histone protein encoding genes, while BRCA1, ATR, ARID1A, XRCC3 and genes encoding for tubulin-associated proteins were present in the chemoresistant tumors. We also found that the mutational spectrum of post-chemotherapy tumors was more reflective of matching metastatic tumor biopsies than pre-chemotherapy samples. These findings support a portrait of modest ongoing genomic instability with respect to single-nucleotide variants induced by or selected for by chemotherapy in TNBCs.

Funder

Genome Quebec, McGill University

Jewish General Hospital Foundation

Publisher

MDPI AG

Subject

Genetics (clinical),Genetics

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