Mapping molecular subtype specific alterations in breast cancer brain metastases identifies clinically relevant vulnerabilities

Author:

Cosgrove Nicola,Varešlija DamirORCID,Keelan Stephen,Elangovan AshuvineeORCID,Atkinson Jennifer M.ORCID,Cocchiglia SinéadORCID,Bane Fiona T.,Singh Vikrant,Furney SimonORCID,Hu Chunling,Carter Jodi M.,Hart Steven N.ORCID,Yadav SiddharthaORCID,Goetz Matthew P.,Hill Arnold D. K.,Oesterreich SteffiORCID,Lee Adrian V.ORCID,Couch Fergus J.,Young Leonie S.ORCID

Abstract

AbstractThe molecular events and transcriptional plasticity driving brain metastasis in clinically relevant breast tumor subtypes has not been determined. Here we comprehensively dissect genomic, transcriptomic and clinical data in patient-matched longitudinal tumor samples, and unravel distinct transcriptional programs enriched in brain metastasis. We report on subtype specific hub genes and functional processes, central to disease-affected networks in brain metastasis. Importantly, in luminal brain metastases we identify homologous recombination deficiency operative in transcriptomic and genomic data with recurrent breast mutational signatures A, F and K, associated with mismatch repair defects, TP53 mutations and homologous recombination deficiency (HRD) respectively. Utilizing PARP inhibition in patient-derived brain metastatic tumor explants we functionally validate HRD as a key vulnerability. Here, we demonstrate a functionally relevant HRD evident at genomic and transcriptomic levels pointing to genomic instability in breast cancer brain metastasis which is of potential translational significance.

Publisher

Springer Science and Business Media LLC

Subject

General Physics and Astronomy,General Biochemistry, Genetics and Molecular Biology,General Chemistry,Multidisciplinary

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