Pancreatic Cells Are Resistant to KRASQ61L Expression due to Hyperactive ERK/MAPK Signaling and Apoptosis Induction

Rachel A Burge1, Lucas Bialousow1, Thomas McFall2

  • 1Department of Biochemistry & Molecular Biology, Medical University of South Carolina, Charleston, South Carolina.

PubMed

Insights

The KRASQ61L mutation, common in cancer, surprisingly limits pancreatic tumor growth by overactivating the ERK/MAPK pathway, causing cell death and supporting the "Goldilocks" model of oncogenic signaling.

Area of Science:

  • Oncology
  • Molecular Biology
  • Cancer Genetics

Background:

  • RAS GTPases are frequently mutated in human cancers, particularly KRAS in pancreatic ductal adenocarcinoma (PDAC).
  • While KRAS mutations at codons 12 and 13 are common in PDAC, KRASQ61L is notably rare, suggesting allele-specific mechanisms limit its oncogenic potential.
  • Understanding these mechanisms is crucial for identifying KRAS effectors and pathways driving tumorigenesis.

Purpose of the Study:

  • To investigate the mechanistic basis for the low prevalence of KRASQ61L in PDAC.
  • To compare the signaling and cellular consequences of KRASQ61L versus the common PDAC mutant KRASG12D.
  • To elucidate the role of ERK/MAPK pathway hyperactivation in KRAS-driven pancreatic cancer.

Main Methods:

  • Utilized a doxycycline-inducible KRAS expression system in an isogenic pancreatic cell line.
  • Employed TurboID proximity labeling and RNA sequencing to map early effector interactions and transcriptional responses.
  • Compared the effects of KRASQ61L and KRASG12D overexpression on cell proliferation and apoptosis.

Main Results:

  • KRASQ61L induced greater hyperactivation of the ERK/MAPK pathway compared to KRASG12D, leading to increased nuclear translocation of ERK1/2.
  • Pancreatic cells exhibited tolerance to KRASG12D overexpression but impaired proliferation and increased apoptosis upon KRASQ61L overexpression.
  • These findings support the "Goldilocks" model, where excessive ERK/MAPK activation is detrimental to tumorigenesis.

Conclusions:

  • KRASQ61L's strong hyperactivation of ERK/MAPK signaling leads to apoptosis, limiting its ability to drive pancreatic tumorigenesis.
  • This provides a mechanistic explanation for the selective absence of KRASQ61L in PDAC.
  • The study highlights KRAS allele-specific vulnerabilities and informs potential therapeutic strategies for KRAS-driven pancreatic cancer.

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