Transcriptomic Profiling Reveals Novel Candidate Genes and Signalling Programs in Breast Cancer Quiescence and
Lewis A Quayle1, Amy Spicer1,2, Penelope D Ottewell1
1Department of Oncology and Metabolism, Medical School, University of Sheffield, Beech Hill Road, Sheffield S10 2RX, UK.
Abstract:
Metastatic recurrence, the major cause of breast cancer mortality, is driven by reactivation of dormant disseminated tumour cells that are defined by mitotic quiescence and chemoresistance. The molecular mechanisms underpinning mitotic quiescence in cancer are poorly understood, severely limiting the development of novel therapies for removal of residual, metastasis-initiating tumour cells. Here, we present a molecular portrait of the quiescent breast cancer cell transcriptome across the four main breast cancer sub-types (luminal, HER2-enriched, basal-like and claudin-low) and identify a novel quiescence-associated 22-gene signature using an established lipophilic-dye (Vybrant® DiD) retention model and whole-transcriptomic profiling (mRNA-Seq). Using functional association network analysis, we elucidate the molecular interactors of these signature genes. We then go on to demonstrate that our novel 22-gene signature strongly correlates with low tumoural proliferative activity, and with dormant disease and late metastatic recurrence (≥5 years after primary tumour diagnosis) in metastatic breast cancer in multiple clinical cohorts. These genes may govern the formation and persistence of disseminated tumour cell populations responsible for breast cancer recurrence, and therefore represent prospective novel candidates to inform future development of therapeutic strategies to target disseminated tumour cells in breast cancer, eliminate minimal residual disease and prevent metastatic recurrence.
Insights
Researchers identified a 22-gene signature linked to dormant breast cancer cells that cause late metastatic recurrence. This discovery offers new therapeutic targets to eliminate residual disease and prevent cancer spread.
Area of Science:
- Oncology
- Molecular Biology
- Genomics
Background:
- Metastatic recurrence is the primary cause of breast cancer mortality, driven by dormant tumor cells that are resistant to chemotherapy.
- The molecular mechanisms of cancer cell dormancy (quiescence) are not well understood, hindering the development of therapies targeting residual disease.
Purpose of the Study:
- To characterize the transcriptome of quiescent breast cancer cells across major subtypes.
- To identify a novel gene signature associated with quiescence and metastatic recurrence.
Main Methods:
- Whole-transcriptomic profiling (mRNA-Seq) and a lipophilic dye retention model were used to analyze quiescent breast cancer cells.
- Functional association network analysis was performed to identify molecular interactors of the signature genes.
Main Results:
- A novel 22-gene signature associated with quiescence was identified in breast cancer cells.
- This signature strongly correlates with low tumor proliferation, dormant disease, and late metastatic recurrence (≥5 years) in clinical cohorts.
Conclusions:
- The identified 22-gene signature may regulate the persistence of disseminated tumor cells responsible for breast cancer recurrence.
- These genes represent potential therapeutic targets for eliminating minimal residual disease and preventing metastasis.
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