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A New Strategy to Control and Eradicate "Undruggable" Oncogenic K-RAS-Driven Pancreatic Cancer: Molecular Insights
Robert E Van Sciver1, Michael P Lee2, Caroline Dasom Lee3
1Department of Microbiology and Molecular Cell Biology, Leroy T. Canoles Jr. Cancer Research Center, Eastern Virginia Medical School, Norfolk, VA 23507, USA. VanSciRE@EVMS.EDU.
Abstract:
Oncogenic K-RAS mutations are found in virtually all pancreatic cancers, making K-RAS one of the most targeted oncoproteins for drug development in cancer therapies. Despite intense research efforts over the past three decades, oncogenic K-RAS has remained largely "undruggable". Rather than targeting an upstream component of the RAS signaling pathway (i.e., EGFR/HER2) and/or the midstream effector kinases (i.e., RAF/MEK/ERK/PI3K/mTOR), we propose an alternative strategy to control oncogenic K-RAS signal by targeting its most downstream signaling module, Seven-In-Absentia Homolog (SIAH). SIAH E3 ligase controls the signal output of oncogenic K-RAS hyperactivation that drives unchecked cell proliferation, uncontrolled tumor growth, and rapid cancer cell dissemination in human pancreatic cancer. Therefore, SIAH is an ideal therapeutic target as it is an extraordinarily conserved downstream signaling gatekeeper indispensable for proper RAS signaling. Guided by molecular insights and core principles obtained from developmental and evolutionary biology, we propose an anti-SIAH-centered anti-K-RAS strategy as a logical and alternative anticancer strategy to dampen uncontrolled K-RAS hyperactivation and halt tumor growth and metastasis in pancreatic cancer. The clinical utility of developing SIAH as both a tumor-specific and therapy-responsive biomarker, as well as a viable anti-K-RAS drug target, is logically simple and conceptually innovative. SIAH clearly constitutes a major tumor vulnerability and K-RAS signaling bottleneck in pancreatic ductal adenocarcinoma (PDAC). Given the high degree of evolutionary conservation in the K-RAS/SIAH signaling pathway, an anti-SIAH-based anti-PDAC therapy will synergize with covalent K-RAS inhibitors and direct K-RAS targeted initiatives to control and eradicate pancreatic cancer in the future.
Insights
Targeting Seven-In-Absentia Homolog (SIAH), a downstream K-RAS signaling module, offers a novel strategy against pancreatic cancer. This approach aims to control K-RAS hyperactivation and halt tumor growth and metastasis.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Therapeutics
Background:
- Oncogenic K-RAS mutations are prevalent in pancreatic cancer, yet K-RAS remains a challenging therapeutic target.
- Existing strategies focus on upstream or midstream components of the RAS pathway, with limited success.
- Seven-In-Absentia Homolog (SIAH) E3 ligase is identified as a critical downstream signaling module of oncogenic K-RAS.
Purpose of the Study:
- To propose a novel anti-K-RAS therapeutic strategy by targeting the downstream SIAH signaling module.
- To investigate SIAH as a potential therapeutic target and biomarker in pancreatic cancer.
- To explore the synergy of targeting SIAH with existing K-RAS-targeted therapies.
Main Methods:
- Leveraging molecular insights and principles from developmental and evolutionary biology.
- Proposing an anti-SIAH-centered strategy to inhibit K-RAS hyperactivation.
- Evaluating the potential of SIAH as a tumor-specific and therapy-responsive biomarker.
Main Results:
- Oncogenic K-RAS hyperactivation drives pancreatic cancer progression via SIAH.
- SIAH acts as a conserved downstream gatekeeper for RAS signaling.
- Targeting SIAH presents a viable and innovative strategy to control K-RAS signaling.
Conclusions:
- SIAH is a critical vulnerability and signaling bottleneck in pancreatic ductal adenocarcinoma (PDAC).
- An anti-SIAH strategy offers a promising approach to dampen K-RAS hyperactivation and combat pancreatic cancer.
- Targeting SIAH may synergize with other K-RAS inhibitors for improved pancreatic cancer treatment.
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