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Distinct evolutionary trajectories of primary high‐grade serous ovarian cancers revealed through spatial mutational profiling

The Journal of Pathology · 2013 · Vol. 231(1) · pp. 21–34
Ali BashashatiGavin HaAlicia ToneJiarui DingLeah PrenticeAndrew RothJamie RosnerKarey ShumanskySteve E. KallogerJanine SenzWinnie YangMelissa K. McConechyNataliya MelnykMichael S. AnglesioMargaret LukKane TseThomas ZengRichard A. MooreYongjun ZhaoMarco A. MarraC. Blake GilksStephen YipDavid G. HuntsmanJessica N. McAlpineSohrab P. Shah

Abstract

High-grade serous ovarian cancer (HGSC) is characterized by poor outcome, often attributed to the emergence of treatment-resistant subclones. We sought to measure the degree of genomic diversity within primary, untreated HGSCs to examine the natural state of tumour evolution prior to therapy. We performed exome sequencing, copy number analysis, targeted amplicon deep sequencing and gene expression profiling on 31 spatially and temporally separated HGSC tumour specimens (six patients), including ovarian masses, distant metastases and fallopian tube lesions. We found widespread intratumoural variation in mutation, copy number and gene expression profiles, with key driver alterations in genes present in only a subset of samples (eg PIK3CA, CTNNB1, NF1). On average, only 51.5% of mutations were present in every sample of a given case (range 10.2-91.4%), with TP53 as the only somatic mutation consistently present in all samples. Complex segmental aneuploidies, such as whole-genome doubling, were present in a subset of samples from the same individual, with divergent copy number changes segregating independently of point mutation acquisition. Reconstruction of evolutionary histories showed one patient with mixed HGSC and endometrioid histology, with common aetiologic origin in the fallopian tube and subsequent selection of different driver mutations in the histologically distinct samples. In this patient, we observed mixed cell populations in the early fallopian tube lesion, indicating that diversity arises at early stages of tumourigenesis. Our results revealed that HGSCs exhibit highly individual evolutionary trajectories and diverse genomic tapestries prior to therapy, exposing an essential biological characteristic to inform future design of personalized therapeutic solutions and investigation of drug-resistance mechanisms.

Cancer Genomics and DiagnosticsOvarian cancer diagnosis and treatmentRenal cell carcinoma treatmentBiologySerous fluidOvarian cancerCopy number analysisAmpliconFallopian tubeCopy-number variationSomatic evolution in cancerExomeExome sequencing

MeSH terms

AgedClone CellsDNA Mutational AnalysisDrug ResistanceFemaleHumansMiddle AgedNeoplasm StagingOvarian NeoplasmsGenetic VariationGene Expression Regulation, NeoplasticCystadenocarcinoma, SerousDisease ProgressionGene DosageGene Expression Profiling
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