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Author

Anil K. Rustgi

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Open access Aug 2026

Stress granules confer an early vulnerability in KRAS-driven pancreatic tumorigenesis.

Pancreatic ductal adenocarcinoma (PDAC) is initiated by activating KRAS mutations, yet most pancreatic cells fail to survive the induced oncogenic stress. How a subset adapts to and initiates malignant transformation remains unclear. Here, we show that stress granules (SGs) formation is a key adaptive mechanism enabling these cells to tolerate oncogenic KRAS signaling. Although we determine that SGs are a generic response in stressed acinar cells, they are required for KRAS-mutant cells to progress to the preneoplastic stage. SGs blocking prevents KRAS-driven acinar-to-ductal metaplasia ex vivo and suppresses preneoplastic lesion formation in vivo. Importantly, SGs inhibition does not affect pancreatic damage during chronic pancreatitis, supporting its safety for selectively targeting KRAS-mutant cells. Finally, SGs are detected in pancreatic tissue from patients with chronic pancreatitis, confirming clinical relevance. Together, these findings identify SGs as a stress adaptation mechanism enabling tumor initiation and highlight them as a target for cancer interception in KRAS-driven PDACs.

Matías Estarás, Emma Cosialls, Gareth Pollin et al. · 0 citations
Open access Jul 2026

Molecular dynamics driving phenotypic divergence among KRAS mutants in pancreatic tumorigenesis.

To define mutation-specific lineage reversion and tumor initiation, Ptf1a-tdTomato mice and multiple KRAS mutants are implemented across several genetic, pharmacologic, and inflammatory perturbations in vivo to deciphering mutation-specific oncogenic trajectories and directing the implementation of KRAS-directed therapeutics.

A. Grimont, David Falvo, W. Sisso et al. · 1 citation

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