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Updated: Mar 15, 2026

Dissection of the Mouse Pancreas for Histological Analysis and Metabolic Profiling
Published on: August 19, 2017
KRAS-related proteins in pancreatic cancer
Karen M Mann1, Haoqiang Ying2, Joseph Juan3
1Cancer Research Program, Houston Methodist Research Institute, Houston, TX 77030, USA.
Abstract:
Pancreatic ductal adenocarcinoma (PDAC) is a highly metastatic disease with a high mortality rate. Genetic and biochemical studies have shown that RAS signaling mediated by KRAS plays a pivotal role in disease initiation, progression and drug resistance. RAS signaling affects several cellular processes in PDAC, including cellular proliferation, migration, cellular metabolism and autophagy. 90% of pancreatic cancer patients harbor somatic oncogenic point mutations in KRAS, which lead to constitutive activation of the molecule. Pancreatic cancers lacking KRAS mutations show activation of RAS via upstream signaling through receptor mediated tyrosine kinases, like EGFR, and in a small fraction of patients, oncogenic activation of the downstream B-RAF molecule is detected. RAS-stimulated signaling of RAF/MEK/ERK, PI3K/AKT/mTOR and RalA/B is active in human pancreatic cancers, cancer cell lines and mouse models of PDAC, although activation levels of each signaling arm appear to be variable across different tumors and perhaps within different subclones of single tumors. Recently, several targeted therapies directed towards MEK, ERK, PI3K and mTOR have been assayed in pancreatic cancer cell lines and in mouse models of the disease with promising results for their ability to impede cellular growth or delay tumor formation, and several inhibitors are currently in clinical trials. However, therapy-induced cross activation of RAS effector molecules has elucidated the complexities of targeting RAS signaling. Combinatorial therapies are now being explored as an approach to overcome RAS-induced therapeutic resistance in pancreatic cancer.
Insights
Pancreatic ductal adenocarcinoma (PDAC) is driven by KRAS signaling, impacting cell growth and drug resistance. Targeting this pathway, including through combinatorial therapies, is crucial for overcoming treatment resistance in pancreatic cancer.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Genetics
Background:
- Pancreatic ductal adenocarcinoma (PDAC) is a lethal cancer characterized by high metastatic potential.
- KRAS signaling is a key driver in PDAC initiation, progression, and therapeutic resistance.
- Somatic KRAS mutations are present in 90% of PDAC patients, leading to constitutive RAS activation.
Purpose of the Study:
- To review the role of RAS signaling in pancreatic cancer.
- To discuss current and emerging therapeutic strategies targeting RAS pathways.
- To highlight the challenges and future directions in treating PDAC.
Main Methods:
- Review of genetic and biochemical studies on RAS signaling in PDAC.
- Analysis of cellular processes affected by RAS signaling (proliferation, migration, metabolism, autophagy).
- Examination of targeted therapies and their clinical trial status.
Main Results:
- RAS-effector signaling pathways (RAF/MEK/ERK, PI3K/AKT/mTOR, RalA/B) are active in PDAC.
- Targeted therapies against MEK, ERK, PI3K, and mTOR show promise in preclinical models.
- Therapy-induced cross-activation of RAS molecules complicates targeted treatment approaches.
Conclusions:
- Targeting RAS signaling is critical for effective PDAC treatment.
- Combinatorial therapies are being explored to overcome resistance to RAS-targeted agents.
- Understanding RAS pathway complexities is essential for developing novel therapeutic strategies.
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