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Updated: Feb 8, 2026

Detection of Targetable Alterations in Non-small Cell Lung Cancer using Next-generation Sequencing
Published on: October 10, 2025
De novo lipogenesis represents a therapeutic target in mutant Kras non-small cell lung cancer
Anju Singh1, Christian Ruiz2, Kavita Bhalla3
1Department of Environmental Health Sciences, Bloomberg School of Public Health, Johns Hopkins University, Baltimore, Maryland, USA.
Abstract:
Oncogenic Kras mutations are one of the most common alterations in non-small cell lung cancer and are associated with poor response to treatment and reduced survival. Driver oncogenes, such as Kras are now appreciated for their ability to promote tumor growth via up-regulation of anabolic pathways. Therefore, we wanted to identify metabolic vulnerabilities in Kras-mutant lung cancer. Using the Kras LSL-G12D lung cancer model, we show that mutant Kras drives a lipogenic gene-expression program. Stable-isotope analysis reveals that mutant Kras promotes de novo fatty acid synthesis in vitro and in vivo. The importance of fatty acid synthesis in Kras-induced tumorigenesis was evident by decreased tumor formation in Kras LSL-G12D mice after treatment with a fatty acid synthesis inhibitor. Importantly, with gain and loss of function models of mutant Kras, we demonstrate that mutant Kras potentiates the growth inhibitory effects of several fatty acid synthesis inhibitors. These studies highlight the potential to target mutant Kras tumors by taking advantage of the lipogenic phenotype induced by mutant Kras.-Singh, A., Ruiz, C., Bhalla, K., Haley, J. A., Li, Q. K., Acquaah-Mensah, G., Montal, E., Sudini, K. R., Skoulidis, F., Wistuba, I. I., Papadimitrakopoulou, V., Heymach, J. V., Boros, L. G., Gabrielson, E., Carretero, J., Wong, K.-k., Haley, J. D., Biswal, S., Girnun, G. D. De novo lipogenesis represents a therapeutic target in mutant Kras non-small cell lung cancer.
Insights
Oncogenic Kras mutations drive fatty acid synthesis in lung cancer. Inhibiting this process, known as de novo lipogenesis, shows promise for treating Kras-mutant non-small cell lung cancer.
Area of Science:
- Oncology
- Molecular Biology
- Metabolic Pathways
Background:
- Oncogenic Kras mutations are prevalent in non-small cell lung cancer (NSCLC).
- Kras mutations are linked to poor treatment response and survival rates.
- Kras promotes tumor growth by upregulating anabolic pathways.
Purpose of the Study:
- To identify metabolic vulnerabilities in Kras-mutant lung cancer.
- To investigate the role of de novo lipogenesis in Kras-driven tumorigenesis.
Main Methods:
- Utilized the Kras LSL-G12D mouse model for lung cancer.
- Employed stable-isotope analysis to track fatty acid synthesis.
- Tested the efficacy of fatty acid synthesis inhibitors in Kras-mutant models.
Main Results:
- Mutant Kras induces a lipogenic gene-expression program.
- Mutant Kras enhances de novo fatty acid synthesis both in vitro and in vivo.
- Inhibition of fatty acid synthesis reduced tumor formation and growth in Kras-mutant models.
Conclusions:
- De novo lipogenesis is a key metabolic vulnerability in Kras-mutant lung cancer.
- Targeting fatty acid synthesis presents a potential therapeutic strategy for Kras-mutant NSCLC.
- Mutant Kras potentiates the efficacy of fatty acid synthesis inhibitors.
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