TP53 loss initiates chromosomal instability in fallopian tube epithelial cells

Author:

Bronder Daniel12ORCID,Tighe Anthony1ORCID,Wangsa Darawalee2,Zong Dali3ORCID,Meyer Thomas J.4ORCID,Wardenaar René5,Minshall Paul1,Hirsch Daniela2ORCID,Heselmeyer-Haddad Kerstin2,Nelson Louisa1ORCID,Spierings Diana5ORCID,McGrail Joanne C.1ORCID,Cam Maggie4,Nussenzweig André3,Foijer Floris5ORCID,Ried Thomas2,Taylor Stephen S.1ORCID

Affiliation:

1. Division of Cancer Sciences, Faculty of Biology, Medicine and Health, University of Manchester, Manchester Cancer Research Centre, Wilmslow Road, Manchester M20 4GJ, UK

2. Genetics Branch, National Cancer Institute, National Institutes of Health, Bethesda, MD 20892, USA

3. Laboratory of Genome Integrity, National Cancer Institute, National Institutes of Health, Bethesda, MD 20892, USA

4. CCR Collaborative Bioinformatics Resource, Center for Cancer Research, National Cancer Institute, National Institutes of Health, Bethesda, MD 20892, USA

5. European Research Institute for the Biology of Ageing (ERIBA), University of Groningen, University Medical Center Groningen, 9713 AV Groningen, The Netherlands

Abstract

ABSTRACT High-grade serous ovarian cancer (HGSOC) originates in the fallopian tube epithelium and is characterized by ubiquitous TP53 mutation and extensive chromosomal instability (CIN). However, direct causes of CIN, such as mutations in DNA replication and mitosis genes, are rare in HGSOC. We therefore asked whether oncogenic mutations that are common in HGSOC can indirectly drive CIN in non-transformed human fallopian tube epithelial cells. To model homologous recombination deficient HGSOC, we sequentially mutated TP53 and BRCA1 then overexpressed MYC. Loss of p53 function alone was sufficient to drive the emergence of subclonal karyotype alterations. TP53 mutation also led to global gene expression changes, influencing modules involved in cell cycle commitment, DNA replication, G2/M checkpoint control and mitotic spindle function. Both transcriptional deregulation and karyotype diversity were exacerbated by loss of BRCA1 function, with whole-genome doubling events observed in independent p53/BRCA1-deficient lineages. Thus, our observations indicate that loss of the key tumour suppressor TP53 is sufficient to deregulate multiple cell cycle control networks and thereby initiate CIN in pre-malignant fallopian tube epithelial cells. This article has an associated First Person interview with the first author of the paper.

Funder

Wellcome Trust

National Institutes of Health

Oxford-Cambridge Scholars Program

International Biomedical Research Alliance

Deutsche Krebshilfe

National Cancer Institute

Cancer Research UK

Publisher

The Company of Biologists

Subject

General Biochemistry, Genetics and Molecular Biology,Immunology and Microbiology (miscellaneous),Medicine (miscellaneous),Neuroscience (miscellaneous)

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