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Mixed responses to targeted therapy driven by chromosomal instability through p53 dysfunction and genome doubling
Sebastijan Hobor1, Maise Al Bakir1, Crispin T Hiley1,2,3
1Cancer Evolution and Genome Instability Laboratory, The Francis Crick Institute, 1 Midland Rd, London, NW1 1AT, UK.
Abstract:
The phenomenon of mixed/heterogenous treatment responses to cancer therapies within an individual patient presents a challenging clinical scenario. Furthermore, the molecular basis of mixed intra-patient tumor responses remains unclear. Here, we show that patients with metastatic lung adenocarcinoma harbouring co-mutations of EGFR and TP53, are more likely to have mixed intra-patient tumor responses to EGFR tyrosine kinase inhibition (TKI), compared to those with an EGFR mutation alone. The combined presence of whole genome doubling (WGD) and TP53 co-mutations leads to increased genome instability and genomic copy number aberrations in genes implicated in EGFR TKI resistance. Using mouse models and an in vitro isogenic p53-mutant model system, we provide evidence that WGD provides diverse routes to drug resistance by increasing the probability of acquiring copy-number gains or losses relative to non-WGD cells. These data provide a molecular basis for mixed tumor responses to targeted therapy, within an individual patient, with implications for therapeutic strategies.
Insights
Patients with lung adenocarcinoma and EGFR/TP53 co-mutations show mixed responses to EGFR tyrosine kinase inhibitors (TKI). Whole genome doubling combined with TP53 mutations drives resistance by increasing genomic instability.
Area of Science:
- Oncology
- Genetics
- Molecular Biology
Background:
- Mixed or heterogeneous treatment responses in cancer patients pose clinical challenges.
- The molecular underpinnings of intra-patient tumor heterogeneity remain largely unknown.
Purpose of the Study:
- To investigate the molecular basis of mixed intra-patient tumor responses to EGFR tyrosine kinase inhibition (TKI) in metastatic lung adenocarcinoma.
- To explore the role of co-mutations and genomic alterations in treatment resistance.
Main Methods:
- Comparative analysis of lung adenocarcinoma patients with EGFR mutations alone versus EGFR and TP53 co-mutations.
- Utilizing mouse models and in vitro isogenic p53-mutant cell systems.
- Assessing the impact of whole genome doubling (WGD) on genomic instability and gene copy-number alterations.
Main Results:
- Patients with co-occurring EGFR and TP53 mutations exhibit a higher likelihood of mixed intra-patient responses to EGFR TKI compared to those with EGFR mutations alone.
- The combination of WGD and TP53 co-mutations significantly increases genome instability and copy-number aberrations in genes associated with EGFR TKI resistance.
- WGD facilitates diverse resistance mechanisms by elevating the probability of acquiring copy-number gains or losses.
Conclusions:
- Provides a molecular explanation for heterogeneous tumor responses within individual patients undergoing targeted therapy.
- Highlights the critical role of WGD and TP53 co-mutations in driving EGFR TKI resistance in lung adenocarcinoma.
- Suggests implications for refining therapeutic strategies in patients with complex genomic profiles.
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