Characterizing Evolutionary Dynamics Reveals Strategies to Exhaust the Spectrum of Subclonal Resistance in EGFR-Mutant Lung Cancer

Archive ouverte

Müller, Nina | Lorenz, Carina | Ostendorp, Jenny | Heisel, Felix | Friese, Ulrich | Cartolano, Maria | Plenker, Dennis | Tumbrink, Hannah | Heimsoeth, Alena | Baedeker, Philipp | Weiss, Jonathan | Ortiz-Cuaran, Sandra | Büttner, Reinhard | Peifer, Martin | Thomas, Roman | Sos, Martin | Berg, Johannes | Brägelmann, Johannes

Edité par CCSD ; American Association for Cancer Research -

International audience. Abstract The emergence of resistance to targeted therapies restrains their efficacy. The development of rationally guided drug combinations could overcome this currently insurmountable clinical challenge. However, our limited understanding of the trajectories that drive the outgrowth of resistant clones in cancer cell populations precludes design of drug combinations to forestall resistance. Here, we propose an iterative treatment strategy coupled with genomic profiling and genome-wide CRISPR activation screening to systematically extract and define preexisting resistant subpopulations in an EGFR-driven lung cancer cell line. Integrating these modalities identifies several resistance mechanisms, including activation of YAP/TAZ signaling by WWTR1 amplification, and estimates the associated cellular fitness for mathematical population modeling. These observations led to the development of a combination therapy that eradicated resistant clones in large cancer cell line populations by exhausting the spectrum of genomic resistance mechanisms. However, a small fraction of cancer cells was able to enter a reversible nonproliferative state of drug tolerance. This subpopulation exhibited mesenchymal properties, NRF2 target gene expression, and sensitivity to ferroptotic cell death. Exploiting this induced collateral sensitivity by GPX4 inhibition clears drug-tolerant populations and leads to tumor cell eradication. Overall, this experimental in vitro data and theoretical modeling demonstrate why targeted mono- and dual therapies will likely fail in sufficiently large cancer cell populations to limit long-term efficacy. Our approach is not tied to a particular driver mechanism and can be used to systematically assess and ideally exhaust the resistance landscape for different cancer types to rationally design combination therapies. Significance: Unraveling the trajectories of preexisting resistant and drug-tolerant persister cells facilitates the rational design of multidrug combination or sequential therapies, presenting an approach to explore for treating EGFR-mutant lung cancer.

Consulter en ligne

Suggestions

Du même auteur

Integrative genome analyses identify key somatic driver mutations of small-cell lung cancer

Archive ouverte | Peifer, Martin | CCSD

International audience

Conservation vs divergence in LEAFY and APETALA1 functions between Arabidopsis thaliana and Cardamine hirsuta.

Archive ouverte | Monniaux, Marie | CCSD

International audience. A conserved genetic toolkit underlies the development of diverse floral forms among angiosperms. However, the degree of conservation vs divergence in the configuration of these gene regulator...

Carbohydrate distribution via SWEET17 is critical for Arabidopsis inflorescence branching under drought

Archive ouverte | Valifard, Marzieh | CCSD

International audience. Abstract Sugars Will Eventually be Exported Transporters (SWEETs) are the most recently discovered family of plant sugar transporters. Functioning as uniporters and thus facilitating the diff...

Chargement des enrichissements...