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LKB1 regulates JNK-dependent stress signaling and apoptotic dependency of KRAS-mutant lung cancers

Nature Communications. 2025-05; 
Chendi Li, Mohammed Usman Syed, Anahita Nimbalkar, Yi Shen, Melissa D Vieira, Cameron Fraser, Zintis Inde, Xingping Qin, Jian Ouyang, Johannes Kreuzer, Sarah E Clark, Grace Kelley, Emily M Hensley, Robert Morris, Raul Lazaro, Brian Belmonte, Audris Oh, Makeba Walcott, Christopher S Nabel, Sean Caenepeel, Anne Y Saiki, Karen Rex, J Russell Lipford, Rebecca S Heist, Jessica J Lin, Wilhelm Haas, Kristopher Sarosiek, Paul E Hughes, Aaron N Hata Massachusetts General Hospital Cancer Center, Boston, MA, USA.
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Gene Synthesis Full length wild-type or mutant MCL-1, BCL-XL coding sequences were synthesized (GenScript) and cloned into pInducer20 (gift from Lee Zou, MGH). Lentiviral particles were prepared by transfecting HEK293 cells with pInducer20 or pInducer20-MCL-1/ pInducer20-BCL-XL, VSV-G (Addgene #8454) and Δ8.91 using Lipofectamine 3000 (ThermoFisher). Get A Quote

摘要

The efficacy of molecularly targeted therapies may be limited by co-occurring mutations within a tumor. Conversely, these alterations may confer collateral vulnerabilities that can be therapeutically leveraged. KRAS-mutant lung cancers are distinguished by recurrent loss of the tumor suppressor STK11/LKB1. Whether LKB1 modulates cellular responses to therapeutic stress seems unknown. Here we show that in LKB1-deficient KRAS-mutant lung cancer cells, inhibition of KRAS or its downstream effector MEK leads to hyperactivation of JNK due to loss of NUAK-mediated PP1B phosphatase activity. JNK-mediated inhibitory phosphorylation of BCL-XL rewires apoptotic dependencies, rendering LKB1-deficient cells vulnerable to M... More

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