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YAP/TAZ for cancer therapy: opportunities and challenges (review)
1Department of Surgical Oncology, The 1st Affiliated Hospital, School of Medicine, Zhejiang University, Hangzhou, Zhejiang 310003, P.R. China.
Abstract:
YAP (Yes-associated protein) and its paralog TAZ (transcriptional co-activator with PDZ-binding motif) are the main downstream effectors of the Hippo signaling pathway. This pathway is an evolutionally conserved signal cascade, which plays pivotal roles in organ size control and tumorigenesis from Drosophila to mammals. Functionally, when the Hippo pathway is activated, YAP and TAZ will be sequestered in the cytoplasm and degraded. Conversely, when the Hippo pathway is deactivated, YAP and TAZ will translocate into nucleus and promote transcription of downstream genes by forming complexes with transcription factors, such as transcriptional enhancer factors (TEF; also referred to as TEAD), runt-domain transcription factors (Runx) and others. Most of these transcription factors belong to growth promoting or apoptosis-inhibition genes. It has been reported that the deactivation of the Hippo pathway, as well as up-regulation of YAP and TAZ was observed in many human cancers with a high frequency, which suggests that the Hippo pathway may be a potent target for developing anticancer drugs. In this review, we provide an overview of the Hippo pathway and summarize recent advances with respect to the role of YAP and TAZ in Hippo signaling pathway and cancer development. Furthermore, we describe the opportunities and challenges for exploit YAP and TAZ as potential therapeutic targets in cancer.
Insights
The Hippo pathway regulates organ size via Yes-associated protein (YAP) and TAZ. Dysregulation of YAP and TAZ is linked to cancer, presenting therapeutic opportunities.
Area of Science:
- Molecular Biology
- Cell Signaling
- Oncology
Background:
- The Hippo signaling pathway is a conserved regulator of organ size.
- Yes-associated protein (YAP) and transcriptional co-activator with PDZ-binding motif (TAZ) are key downstream effectors.
- Hippo pathway dysregulation is implicated in human cancers.
Purpose of the Study:
- To review the Hippo pathway's role in cancer.
- To summarize recent advances on YAP and TAZ in cancer development.
- To explore YAP and TAZ as potential cancer therapeutic targets.
Main Methods:
- Literature review of Hippo pathway signaling.
- Analysis of YAP and TAZ functions in tumorigenesis.
- Discussion of therapeutic strategies targeting YAP and TAZ.
Main Results:
- Hippo pathway inactivation leads to YAP/TAZ nuclear translocation and gene transcription.
- YAP and TAZ promote growth and inhibit apoptosis.
- YAP and TAZ are frequently upregulated in human cancers.
Conclusions:
- The Hippo pathway, YAP, and TAZ are critical in cancer development.
- Targeting YAP and TAZ offers promising anticancer therapeutic strategies.
- Further research is needed to overcome challenges in YAP/TAZ-targeted cancer therapy.
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