TY - JOUR
T1 - Mixed responses to targeted therapy driven by chromosomal instability through p53 dysfunction and genome doubling
AU - Hobor, Sebastijan
AU - Al Bakir, Maise
AU - Hiley, Crispin T.
AU - Skrzypski, Marcin
AU - Frankell, Alexander M.
AU - Bakker, Bjorn
AU - Watkins, Thomas B.K.
AU - Markovets, Aleksandra
AU - Dry, Jonathan R.
AU - Brown, Andrew P.
AU - van der Aart, Jasper
AU - van den Bos, Hilda
AU - Spierings, Diana
AU - Oukrif, Dahmane
AU - Novelli, Marco
AU - Chakrabarti, Turja
AU - Rabinowitz, Adam H.
AU - Ait Hassou, Laila
AU - Litière, Saskia
AU - Kerr, D. Lucas
AU - Tan, Lisa
AU - Kelly, Gavin
AU - Moore, David A.
AU - Renshaw, Matthew J.
AU - Venkatesan, Subramanian
AU - Hill, William
AU - Huebner, Ariana
AU - Martínez-Ruiz, Carlos
AU - Black, James R.M.
AU - Wu, Wei
AU - Angelova, Mihaela
AU - McGranahan, Nicholas
AU - Downward, Julian
AU - Chmielecki, Juliann
AU - Barrett, Carl
AU - Litchfield, Kevin
AU - Chew, Su Kit
AU - Blakely, Collin M.
AU - de Bruin, Elza C.
AU - Foijer, Floris
AU - Vousden, Karen H.
AU - Bivona, Trever G.
AU - Lester, Jason F.
AU - Bajaj, Amrita
AU - Nakas, Apostolos
AU - Sodha-Ramdeen, Azmina
AU - Tufail, Mohamad
AU - Scotland, Molly
AU - Boyles, Rebecca
AU - Rathinam, Sridhar
AU - TRACERx Consortium
AU - Aerts, Hugo J.W.L.
AU - Swatson, Charles
N1 - Funding Information:
We would like to thank all the patients for their generosity in participating in the clinical trials and giving permission to share their data. We would like to thank The Francis CRICK Institute Science Technology Platforms for their continuing support; Experimental Histopathology, Biological Research Facility, Flow-Cytometry Facility, Advanced Sequencing, In Vivo Imaging, Light Microscopy STP, Bioinformatics & Biostatistics, Cell Services and High Throughput Screening; especially Mike Howell, Ming Jiang and Scott Warchal. We would like to acknowledge the RECIST working group for collecting the data in the EORTC database. This work was supported by the Francis Crick Institute that receives its core funding from Cancer Research UK (FC001169), the UK Medical Research Council (FC001169), and the Wellcome Trust (FC001169). For the purpose of Open Access, the author has applied a CC BY public copyright licence to any Author Accepted Manuscript version arising from this submission. L.A.H.\u2019s work as Fellow at EORTC Headquarters was supported by a grant from the Grierson Fund through the EORTC Cancer Research Fund (ECRF). S.Z. is a CRUK Career Development Fellow (award ref. RCCCDF-Nov21\\100005) and is supported by the Rosetrees Trust (grant ref. M917). R.E.H. was supported by a Sir Henry Wellcome Postdoctoral Fellowship (Wellcome Trust; WT209199/Z/17). N.K. is supported by the Breast Cancer Research Foundation (BCRF 23-157), the Rosetrees Trust and Cancer Research UK. E.G. received support from the ERC Consolidator Grant THESEUS (grant agreement no.617844). B.B., W.H., and E.G. were funded by the ERC Advanced Grant PROTEUS, (grant agreement no. 835297). C.S. is a Royal Society Napier Research Professor (RSRP\\R\\210001). C.S. is funded by Cancer Research UK (TRACERx (C11496/A17786), PEACE (C416/A21999) and CRUK Cancer Immunotherapy Catalyst Network); Cancer Research UK Lung Cancer Centre of Excellence (C11496/A30025); the Rosetrees Trust, Butterfield and Stoneygate Trusts; NovoNordisk Foundation (ID16584); Royal Society Professorship Enhancement Award (RP/EA/180007); National Institute for Health Research (NIHR) University College London Hospitals Biomedical Research Centre; the Cancer Research UK-University College London Centre; Experimental Cancer Medicine Centre; the Breast Cancer Research Foundation (US); and The Mark Foundation for Cancer Research (Grant 21-029-ASP). This work was supported by a Stand Up To Cancer\u2010LUNGevity-American Lung Association Lung Cancer Interception Dream Team Translational Research Grant (Grant Number: SU2C-AACR-DT23-17 to S.M. Dubinett and A.E. Spira). Stand Up To Cancer is a division of the Entertainment Industry Foundation. Research grants are administered by the American Association for Cancer Research, the Scientific Partner of SU2C. C.S. is in receipt of an ERC Advanced Grant (PROTEUS) from the European Research Council under the European Union\u2019s Horizon 2020 research and innovation program (grant agreement no. 835297).
Publisher Copyright:
© The Author(s) 2024.
PY - 2024/12/1
Y1 - 2024/12/1
N2 - 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.
AB - 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.
U2 - 10.1038/s41467-024-47606-9
DO - 10.1038/s41467-024-47606-9
M3 - Article
SN - 2041-1723
VL - 15
JO - Nature Communications
JF - Nature Communications
IS - 1
M1 - 4871
ER -