It is reported that treatment of NSCLC KRAS G12C cells with sotorasib induces M1C expression by a STAT1-dependent pathway, and M1C drives the sotorasib resistant phenotype by NF-κB-mediated induction of the epithelial-mesenchymal transition and a mucinous gene program.
Abstract
Treatment of NSCLC KRAS G12C mutant tumors with the allele-selective sotorasib and adagrasib inhibitors is invariably associated with acquired resistance. The MUC1-encoded oncogenic M1C protein is necessary for self-renewal of NSCLC KRAS mutant cells. We report that treatment of NSCLC KRAS G12C cells with sotorasib induces M1C expression by a STAT1-dependent pathway. In turn, M1C drives the sotorasib resistant phenotype by NF-κB-mediated induction of the epithelial-mesenchymal transition (EMT) and a mucinous gene program. Targeting M1C→NF-κB signaling (i) suppresses EMT and mucin genes, and (ii) reverses sotorasib resistance. Of translational relevance, treatment with a M1C antibody-drug conjugate (ADC) is effective against two sotorasib-resistant NSCLC KRAS G12C cell lines and two patient-derived tumor xenograft models. Analysis of patients with NSCLC KRAS G12C tumors treated with sotorasib/adagrasib and overexpressing MUC1 associates with decreases in overall survival. These findings identify M1C as a key effector of sotorasib resistance and as a target for treatment of patients with refractory NSCLC KRAS G12C mutant tumors.
Background KRAS G12C-mutant advanced non-small cell lung cancer (NSCLC) is currently treated with KRAS G12C covalent inhibitors, such as sotorasib, or RAS (ON) G12-selective inhibitors; however, response rates and progression-free survival remain limited, with recurrence occurring in most patients. Although mechanisms...
The in vitro proliferation of AKP-M4 cells, but not KRAS wild-type SNU-1079 and SSP-25 cells, was reduced by the KRAS G12D mutation inhibitor MRTX-1133, which supports the development of KRAS mutation inhibitor for CCA treatment.
J. Hung, Tsai-Hsien Hung, Chun-Nan Yeh et al.· Journal of Immunology· 0 citations
This review systematically summarizes the molecular mechanisms driving KRAS G12C‑mutant lung cancer, clinical applications of targeted drugs, resistance and heterogeneity challenges, and progress in combination therapy, providing a reference for clinical decision-making and further research in this field.
Xizhi Zha· Theoretical and Natural Scie...· 0 citations
In contrast to non-small cell lung cancer and pancreatic cancer, KRAS inhibitors exhibited limited single agent activities in colorectal cancer (CRC), largely owing to EGFR-mediated adaptive MAPK pathway reactivation and intratumor heterogeneity. JAB-BX600, a humanized, EGFR-targeted antibody-drug conjugate (ADC)...
Peng Wang, Fangjie Liu, Xiaoyu Liu et al.· Clinical Cancer Research· 0 citations
In contrast to non-small cell lung cancer and pancreatic cancer, KRAS inhibitors exhibited limited single agent activities in colorectal cancer (CRC), largely owing to EGFR-mediated adaptive MAPK pathway reactivation and intratumor heterogeneity. JAB-BX600, a humanized, EGFR-targeted antibody-drug conjugate (ADC)...
Peng Wang, Fangjie Liu, Xiaoyu Liu et al.· Clinical Cancer Research· 0 citations
KRASG12D-selective and pan-RAS inhibitors have shown promise in pancreatic ductal adenocarcinoma (PDAC), yet adaptive resistance is anticipated to limit durability of response. Exportin 1 (XPO1), a nuclear export protein frequently overexpressed in PDAC, represents a potential vulnerability in KRAS-mutant cancers. We e...
H. Y. Khan, M. Al-Hallak, A. Aboukameel et al.· Cancer Letters· 0 citations
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