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September 29, 2025Cancer Research0 citations

Abstract B020: Oncogenic KRAS drives nutrient transport to support growth in pancreatic cancer

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HKHarshita KhedkarLSLaiba ShiekhMCMatthew C. Cheung

Key Points

  • Inhibition of KRAS leads to altered nutrient transport, affecting tumor cell growth and metabolism.
  • Some PDAC cell lines exhibited increased proliferation despite KRASG12D inhibition, indicating resistance mechanisms.
  • SLC20A1 was identified as a novel transporter regulated by KRAS, playing a crucial role in the Warburg effect.
  • Nutrient transport alterations suggest potential therapeutic targets in KRAS-reliant pancreatic cancer models.

Abstract

Abstract Pancreatic ductal adenocarcinoma (PDAC) is a highly aggressive malignancy characterized by a dense desmoplastic stroma and a nutrient-deprived tumor microenvironment (TME). These harsh conditions drive metabolic symbiosis, where cancer cells, stromal cells, and immune cells exchange metabolites to sustain tumor growth, therapy resistance, and immune evasion. Although MRTX1133 (KRASG12D inhibitor) has demonstrated promise in targeting the KRAS/MAPK pathway, responses differ throughout PDAC subtypes, and resistance has been reported. We treated PDAC cell lines with KRASG12D inhibitor (KRASi) and found a paradoxical increase in proliferation in some cell lines while suppressing growth in others, indicating the activation of compensatory survival mechanisms. In the sensitive cell lines, we found that KRASi disrupted growth, altered the metabolomic profile, and nutrient transport. We have identified SLC20A1, a phosphate transporter, as a novel KRAS-driven transporter. CRISPR/Cas9-mediated knockout of SLC20A1 disrupted the Warburg effect in PDAC cells. In conclusion, our data suggests that KRAS/MAPK inhibition exert robust control on nutrient transport as a mechanism to impair metabolism in KRAS-reliant PDAC cells. Citation Format: Harshita Nivrutti. Khedkar, Laiba Naz. Shiekh, Matthew Cheung, Don-Gerard Conde, Zeribe C. Nwosu. Oncogenic KRAS drives nutrient transport to support growth in pancreatic cancer abstract. In: Proceedings of the AACR Special Conference in Cancer Research: Advances in Pancreatic Cancer Research—Emerging Science Driving Transformative Solutions; Boston, MA; 2025 Sep 28-Oct 1; Boston, MA. Philadelphia (PA): AACR; Cancer Res 2025;85 (18Suppl₃): Abstract nr B020.

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Cite This Study

Khedkar et al. (2025) studied this question.

synapsesocial.com/papers/68da58dcc1728099cfd113b9https://doi.org/10.1158/1538-7445.pancreatic25-b020
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Abstract C017: Targeting KRAS selectively induce metabolic reprogramming in pancreatic cancer2024
  2. 2Abstract 7320: KRAS-PIP5K1A-SDC1 axis regulates nutrient scavenging in pancreatic cancer2026
  3. 3Abstract A017: Dual Targeting of KRAS and Nutrient Scavenging via SDC1 Inhibition Offers a Promising Therapeutic Strategy in Pancreatic Cancer2025
  4. 4Abstract A006: Assessing metabolic requirements for RAS inhibitor resistance in pancreatic cancer2025
  5. 5Abstract C012: Overcoming Cell Subtype-Specific Adaptive Resistance to KRAS G12D Inhibition in KRAS G12D-Mutant Pancreatic Cancer2024