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Updated: Jul 1, 2025

A High-throughput Cell Microarray Platform for Correlative Analysis of Cell Differentiation and Traction Forces
Published on: March 1, 2017
Dynamic YAP expression in the non-parenchymal liver cell compartment controls heterologous cell communication
Kaijing Liu1,2,3, Lilija Wehling2,4, Shan Wan5
1Department of Medical Oncology, Sun Yat-Sen University Cancer Center, Guangdong, China.
Introduction:
The Hippo pathway and its transcriptional effectors yes-associated protein (YAP) and transcriptional coactivator with PDZ-binding motif (TAZ) are targets for cancer therapy. It is important to determine if the activation of one factor compensates for the inhibition of the other. Moreover, it is unknown if YAP/TAZ-directed perturbation affects cell-cell communication of non-malignant liver cells.
Materials And Methods:
To investigate liver-specific phenotypes caused by YAP and TAZ inactivation, we generated mice with hepatocyte (HC) and biliary epithelial cell (BEC)-specific deletions for both factors (YAPKO, TAZKO and double knock-out (DKO)). Immunohistochemistry, single-cell sequencing, and proteomics were used to analyze liver tissues and serum.
Results:
The loss of BECs, liver fibrosis, and necrosis characterized livers from YAPKO and DKO mice. This phenotype was weakened in DKO tissues compared to specimens from YAPKO animals. After depletion of YAP in HCs and BECs, YAP expression was induced in non-parenchymal cells (NPCs) in a cholestasis-independent manner. YAP positivity was detected in subgroups of Kupffer cells (KCs) and endothelial cells (ECs). The secretion of pro-inflammatory chemokines and cytokines such as C-X-C motif chemokine ligand 11 (CXCL11), fms-related receptor tyrosine kinase 3 ligand (FLT3L), and soluble intercellular adhesion molecule-1 (ICAM1) was increased in the serum of YAPKO animals. YAP activation in NPCs could contribute to inflammation via TEA domain transcription factor (TEAD)-dependent transcriptional regulation of secreted factors.
Conclusion:
YAP inactivation in HCs and BECs causes liver damage, and concomitant TAZ deletion does not enhance but reduces this phenotype. Additionally, we present a new mechanism by which YAP contributes to cell-cell communication originating from NPCs.
Insights
YAP inactivation in liver cells causes damage, with TAZ deletion reducing this effect. YAP activation in non-parenchymal cells influences cell communication and inflammation.
Area of Science:
- Hepatology
- Cell Biology
- Molecular Biology
Background:
- The Hippo pathway, including yes-associated protein (YAP) and transcriptional coactivator with PDZ-binding motif (TAZ), is a key regulator in cancer therapy.
- Understanding compensatory mechanisms between YAP and TAZ is crucial.
- The impact of YAP/TAZ perturbation on non-malignant liver cell communication remains unclear.
Purpose of the Study:
- To investigate liver-specific phenotypes resulting from YAP and TAZ inactivation.
- To determine if TAZ deletion affects YAP-induced liver damage.
- To explore YAP/TAZ roles in non-parenchymal cell communication.
Main Methods:
- Generation of mice with hepatocyte (HC) and biliary epithelial cell (BEC)-specific YAP and TAZ deletions (YAPKO, TAZKO, DKO).
- Analysis of liver tissues and serum using immunohistochemistry, single-cell sequencing, and proteomics.
- Assessment of YAP expression in non-parenchymal cells (NPCs) post-depletion.
Main Results:
- YAP inactivation in HCs and BECs led to BEC loss, liver fibrosis, and necrosis, with TAZ deletion mitigating these effects.
- YAP expression was induced in NPCs (Kupffer cells, endothelial cells) independently of cholestasis.
- Increased serum levels of pro-inflammatory factors (CXCL11, FLT3L, ICAM1) were observed in YAPKO mice.
Conclusions:
- YAP inactivation in liver cells causes damage, and TAZ deletion does not enhance but reduces this phenotype.
- YAP activation in NPCs represents a novel mechanism contributing to liver inflammation.
- This study highlights YAP's role in NPC-mediated cell communication.
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