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Updated: Jan 19, 2026

Author Spotlight: Transmitochondrial Cybrid Generation Using Cancer Cell Lines
Published on: March 17, 2023
KRAS-Driven Metabolic Rewiring Reveals Novel Actionable Targets in Cancer
Emanuela Pupo1,2, Daniele Avanzato1,2, Emanuele Middonti1,2
1Department of Oncology, University of Torino Medical School, Turin, Italy.
Abstract:
Tumors driven by mutant KRAS are among the most aggressive and refractory to treatment. Unfortunately, despite the efforts, targeting alterations of this GTPase, either directly or by acting on the downstream signaling cascades, has been, so far, largely unsuccessful. However, recently, novel therapeutic opportunities are emerging based on the effect that this oncogenic lesion exerts in rewiring the cancer cell metabolism. Cancer cells that become dependent on KRAS-driven metabolic adaptations are sensitive to the inhibition of these metabolic routes, revealing novel therapeutic windows of intervention. In general, mutant KRAS fosters tumor growth by shifting cancer cell metabolism toward anabolic pathways. Depending on the tumor, KRAS-driven metabolic rewiring occurs by up-regulating rate-limiting enzymes involved in amino acid, fatty acid, or nucleotide biosynthesis, and by stimulating scavenging pathways such as macropinocytosis and autophagy, which, in turn, provide building blocks to the anabolic routes, also maintaining the energy levels and the cell redox potential (1). This review will discuss the most recent findings on mutant KRAS metabolic reliance in tumor models of pancreatic and non-small-cell lung cancer, also highlighting the role that these metabolic adaptations play in resistance to target therapy. The effects of constitutive KRAS activation in glycolysis elevation, amino acids metabolism reprogramming, fatty acid turnover, and nucleotide biosynthesis will be discussed also in the context of different genetic landscapes.
Insights
Mutant KRAS drives aggressive cancers by altering cell metabolism. Targeting these KRAS-driven metabolic adaptations offers new therapeutic strategies for difficult-to-treat tumors like pancreatic and lung cancer.
Area of Science:
- Oncology
- Cancer Metabolism
- Molecular Biology
Background:
- Mutant KRAS drives aggressive and treatment-resistant cancers.
- Targeting KRAS directly or its downstream pathways has yielded limited success.
- KRAS mutations significantly alter cancer cell metabolism, creating dependencies.
Purpose of the Study:
- To review recent findings on KRAS-driven metabolic adaptations in cancer.
- To highlight therapeutic opportunities by targeting these metabolic vulnerabilities.
- To discuss the role of metabolic rewiring in treatment resistance.
Main Methods:
- Literature review of recent studies on KRAS and cancer metabolism.
- Analysis of metabolic pathways affected by mutant KRAS.
- Focus on pancreatic and non-small-cell lung cancer models.
Main Results:
- Mutant KRAS promotes anabolic pathways, increasing demand for building blocks.
- KRAS-driven metabolic rewiring includes enhanced glycolysis, amino acid, fatty acid, and nucleotide biosynthesis.
- Scavenging pathways like macropinocytosis and autophagy are upregulated to supply metabolic needs.
Conclusions:
- KRAS-driven metabolic adaptations represent a critical vulnerability in cancer.
- Targeting these specific metabolic routes offers novel therapeutic windows.
- Understanding metabolic reliance is key to overcoming resistance to targeted therapies.
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