In vivo vulnerabilities to GPX4 and HDAC inhibitors in drug-persistent versus drug-resistant BRAFV600E lung adenocarcinoma

药物持久性和药物耐药性 BRAFV600E 肺腺癌对 GPX4 和 HDAC 抑制剂的体内脆弱性

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作者:Marie-Julie Nokin, Elodie Darbo, Elodie Richard, Sonia San José, Sergio de Hita, Valérie Prouzet-Mauleon, Béatrice Turcq, Laura Gerardelli, Rebekah Crake, Valérie Velasco, Benjamin Koopmansch, Frederic Lambert, Jenny Y Xue, Ben Sang, Julie Horne, Eric Ziemons, Alberto Villanueva, Arnaud Blomme, Mich

Abstract

The current targeted therapy for BRAFV600E-mutant lung cancer consists of a dual blockade of RAF/MEK kinases often combining dabrafenib/trametinib (D/T). This regimen extends survival when compared to single-agent treatments, but disease progression is unavoidable. By using whole-genome CRISPR screening and RNA sequencing, we characterize the vulnerabilities of both persister and D/T-resistant cellular models. Oxidative stress together with concomitant induction of antioxidant responses is boosted by D/T treatment. However, the nature of the oxidative damage, the choice of redox detoxification systems, and the resulting therapeutic vulnerabilities display stage-specific differences. Persister cells suffer from lipid peroxidation and are sensitive to ferroptosis upon GPX4 inhibition in vivo. Biomarkers of lipid peroxidation are detected in clinical samples following D/T treatment. Acquired alterations leading to mitogen-activated protein kinase (MAPK) reactivation enhance cystine transport to boost GPX4-independent antioxidant responses. Similarly to BRAFV600E-mutant melanoma, histone deacetylase (HDAC) inhibitors decrease D/T-resistant cell viability and extend therapeutic response in vivo.

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