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Updated: Jun 28, 2025

Monitoring Hippo Signaling Pathway Activity Using a Luciferase-based Large Tumor Suppressor LATS Biosensor
Published on: September 13, 2018
Hippo Signaling at the Hallmarks of Cancer and Drug Resistance
1Institute of Molecular and Cell Biology, A*STAR (Agency for Science, Technology, and Research), Singapore 138673, Singapore.
Abstract:
Originally identified in Drosophila melanogaster in 1995, the Hippo signaling pathway plays a pivotal role in organ size control and tumor suppression by inhibiting proliferation and promoting apoptosis. Large tumor suppressors 1 and 2 (LATS1/2) directly phosphorylate the Yki orthologs YAP (yes-associated protein) and its paralog TAZ (also known as WW domain-containing transcription regulator 1 [WWTR1]), thereby inhibiting their nuclear localization and pairing with transcriptional coactivators TEAD1-4. Earnest efforts from many research laboratories have established the role of mis-regulated Hippo signaling in tumorigenesis, epithelial mesenchymal transition (EMT), oncogenic stemness, and, more recently, development of drug resistances. Hippo signaling components at the heart of oncogenic adaptations fuel the development of drug resistance in many cancers for targeted therapies including KRAS and EGFR mutants. The first U.S. food and drug administration (US FDA) approval of the imatinib tyrosine kinase inhibitor in 2001 paved the way for nearly 100 small-molecule anti-cancer drugs approved by the US FDA and the national medical products administration (NMPA). However, the low response rate and development of drug resistance have posed a major hurdle to improving the progression-free survival (PFS) and overall survival (OS) of cancer patients. Accumulating evidence has enabled scientists and clinicians to strategize the therapeutic approaches of targeting cancer cells and to navigate the development of drug resistance through the continuous monitoring of tumor evolution and oncogenic adaptations. In this review, we highlight the emerging aspects of Hippo signaling in cross-talk with other oncogenic drivers and how this information can be translated into combination therapy to target a broad range of aggressive tumors and the development of drug resistance.
Insights
The Hippo signaling pathway regulates organ size and suppresses tumors. Dysregulation of this pathway contributes to cancer drug resistance, highlighting its potential for combination therapies.
Area of Science:
- Cell Biology
- Molecular Oncology
- Cancer Therapeutics
Background:
- The Hippo signaling pathway is crucial for organ size control and tumor suppression.
- Dysregulation of Hippo signaling is implicated in tumorigenesis, epithelial-mesenchymal transition, and drug resistance.
- Targeted cancer therapies face challenges due to low response rates and acquired drug resistance.
Purpose of the Study:
- To review the emerging roles of the Hippo signaling pathway in cancer.
- To explore the cross-talk between Hippo signaling and other oncogenic drivers.
- To discuss therapeutic strategies targeting aggressive tumors and drug resistance.
Main Methods:
- Literature review of Hippo signaling pathway research.
- Analysis of Hippo signaling's role in tumorigenesis and drug resistance.
- Exploration of therapeutic implications and combination strategies.
Main Results:
- Hippo pathway components are central to oncogenic adaptations driving drug resistance.
- Mis-regulated Hippo signaling contributes to various hallmarks of cancer.
- Cross-talk with oncogenic drivers exacerbates tumor progression and resistance.
Conclusions:
- The Hippo pathway is a key player in cancer development and therapeutic resistance.
- Understanding Hippo signaling's interactions can inform novel combination therapies.
- Targeting the Hippo pathway offers potential to overcome drug resistance and improve patient outcomes.
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