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Updated: Jan 20, 2026

Monitoring Hippo Signaling Pathway Activity Using a Luciferase-based Large Tumor Suppressor LATS Biosensor
Published on: September 13, 2018
Safety Considerations in the Development of Hippo Pathway Inhibitors in Cancers
Satoko Kakiuchi-Kiyota1, Melissa M Schutten1, Yu Zhong1
1Department of Safety Assessment, Genentech, Inc., South San Francisco, CA, United States.
Abstract:
The Hippo pathway is a critical regulator of cell and organ growth and has emerged as a target for therapeutic intervention in cancers. Its signaling is thought to play an important role in various physiological processes including homeostasis and tissue regeneration. To date there has been limited information about potential pharmacology-related (on-target) safety liabilities of Hippo pathway inhibitors in the context of cancer indications. Herein, we review data from human genetic disorders and genetically engineered rodent models to gain insight into safety liabilities that may emerge from the inhibition of Hippo pathway. Germline systemic deletion of murine Hippo pathway effectors (Yap, Taz, and Teads) resulted in embryonic lethality or developmental phenotypes. Mouse models with tissue-specific deletion (or mutant overexpression) of the key effectors in Hippo pathways have indicated that, at least in some tissues, Hippo signaling may be dispensable for physiological homeostasis; and appears to be critical for regeneration upon tissue damage, indicating that patients with underlying comorbidities and/or insults caused by therapeutic agents and/or comedications may have a higher risk. Caution should be taken in interpreting phenotypes from tissue-specific transgenic animal models since some tissue-specific promoters are turned on during development. In addition, therapeutic agents may result in systemic effects not well-predicted by animal models with tissue-specific gene deletion. Therefore, the development of models that allows for systemic deletion of Yap and/or Taz in adult animals will be key in evaluating the potential safety liabilities of Hippo pathway modulation. In this review, we focus on potential challenges and strategies for targeting the Hippo pathway in cancers.
Insights
Inhibiting the Hippo pathway for cancer therapy may pose safety risks. Research using genetic models suggests potential developmental issues and impaired tissue regeneration, highlighting the need for careful evaluation.
Area of Science:
- Oncology
- Molecular Biology
- Developmental Biology
Background:
- The Hippo pathway regulates organ size and is a cancer therapeutic target.
- Its role in homeostasis and regeneration is crucial.
- Limited data exists on on-target safety liabilities of Hippo pathway inhibitors.
Purpose of the Study:
- To review safety liabilities of Hippo pathway inhibition using genetic models.
- To identify potential risks for cancer patients undergoing therapy.
- To discuss challenges and strategies for targeting the Hippo pathway in cancer.
Main Methods:
- Review of human genetic disorders.
- Analysis of genetically engineered rodent models (germline and tissue-specific deletions/mutations of Yap, Taz, Teads).
Main Results:
- Germline deletion of Hippo pathway effectors (Yap, Taz, Teads) caused embryonic lethality or developmental defects.
- Tissue-specific models suggest Hippo signaling is vital for regeneration but dispensable for homeostasis in some tissues.
- Potential for increased patient risk with comorbidities or co-therapies.
Conclusions:
- Hippo pathway inhibition presents potential safety concerns, particularly regarding development and regeneration.
- Tissue-specific models have limitations in predicting systemic effects.
- Developing adult systemic deletion models is crucial for accurate safety assessment of Hippo pathway modulators.
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