Targeting YAP-mediated HSC death susceptibility and senescence for treatment of liver fibrosis.

dc.contributor.author

Du, Kuo

dc.contributor.author

Maeso-Díaz, Raquel

dc.contributor.author

Oh, Seh Hoon

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Wang, Ergang

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Chen, Tianyi

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Pan, Christopher

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Xiang, Kun

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Dutta, Rajesh Kumar

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Wang, Xiao-Fan

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Chi, Jen-Tsan

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Chi, Jen-Tsan

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Diehl, Anna Mae

dc.date.accessioned

2025-12-01T15:04:51Z

dc.date.available

2025-12-01T15:04:51Z

dc.date.issued

2023-06

dc.description.abstract

Background and aims

Liver fibrosis results from the accumulation of myofibroblasts (MFs) derived from quiescent HSCs, and yes-associated protein (YAP) controls this state transition. Although fibrosis is also influenced by HSC death and senescence, whether YAP regulates these processes and whether this could be leveraged to treat liver fibrosis are unknown.

Approach and results

YAP activity was manipulated in MF-HSCs to determine how YAP impacts susceptibility to pro-apoptotic senolytic agents or ferroptosis. Effects of senescence on YAP activity and susceptibility to apoptosis versus ferroptosis were also examined. CCl 4 -treated mice were treated with a ferroptosis inducer or pro-apoptotic senolytic to determine the effects on liver fibrosis. YAP was conditionally disrupted in MFs to determine how YAP activity in MF-HSC affects liver fibrosis in mouse models. Silencing YAP in cultured MF-HSCs induced HSC senescence and vulnerability to senolytics, and promoted ferroptosis resistance. Conversely, inducing HSC senescence suppressed YAP activity, increased sensitivity to senolytics, and decreased sensitivity to ferroptosis. Single-cell analysis of HSCs from fibrotic livers revealed heterogeneous sensitivity to ferroptosis, apoptosis, and senescence. In mice with chronic liver injury, neither the ferroptosis inducer nor senolytic improved fibrosis. However, selectively depleting YAP in MF-HSCs induced senescence and decreased liver injury and fibrosis.

Conclusion

YAP determines whether MF-HSCs remain activated or become senescent. By regulating this state transition, Yap controls both HSC fibrogenic activity and susceptibility to distinct mechanisms for cell death. MF-HSC-specific YAP depletion induces senescence and protects injured livers from fibrosis. Clarifying determinants of HSC YAP activity may facilitate the development of novel anti-fibrotic therapies.
dc.identifier.issn

0270-9139

dc.identifier.issn

1527-3350

dc.identifier.uri

https://hdl.handle.net/10161/33651

dc.publisher

Ovid Technologies (Wolters Kluwer Health)

dc.relation.ispartof

Hepatology (Baltimore, Md.)

dc.relation.isversionof

10.1097/hep.0000000000000326

dc.rights.uri

https://creativecommons.org/licenses/by-nc/4.0

dc.subject

Liver

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Animals

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Mice

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Liver Cirrhosis

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Adaptor Proteins, Signal Transducing

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Cell Death

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Hepatic Stellate Cells

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Senotherapeutics

dc.title

Targeting YAP-mediated HSC death susceptibility and senescence for treatment of liver fibrosis.

dc.type

Conference

duke.contributor.orcid

Du, Kuo|0000-0002-1446-4653

duke.contributor.orcid

Chi, Jen-Tsan|0000-0003-3433-903X

pubs.begin-page

1998

pubs.end-page

2015

pubs.issue

6

pubs.organisational-group

Duke

pubs.organisational-group

Pratt School of Engineering

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School of Medicine

pubs.organisational-group

Basic Science Departments

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Clinical Science Departments

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Institutes and Centers

pubs.organisational-group

Cell Biology

pubs.organisational-group

Integrative Immunobiology

pubs.organisational-group

Molecular Genetics and Microbiology

pubs.organisational-group

Pharmacology & Cancer Biology

pubs.organisational-group

Biomedical Engineering

pubs.organisational-group

Medicine

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Radiation Oncology

pubs.organisational-group

Medicine, Gastroenterology

pubs.organisational-group

Medicine, Rheumatology and Immunology

pubs.organisational-group

Duke Cancer Institute

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Duke Regeneration Center

pubs.publication-status

Published

pubs.volume

77

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