YAP and endothelin-1 signaling: an emerging alliance in cancer
Piera Tocci1, Giovanni Blandino2, Anna Bagnato3
1Preclinical Models and New Therapeutic Agents Unit, Advanced Diagnostic and Technological Innovation, Istituto di Ricovero e Cura a Carattere Scientifico (IRCCS), Regina Elena National Cancer Institute, Via Elio Chianesi, 53, 00144, Rome, Italy.
Abstract:
The rational making the G protein-coupled receptors (GPCR) the centerpiece of targeted therapies is fueled by the awareness that GPCR-initiated signaling acts as pivotal driver of the early stages of progression in a broad landscape of human malignancies. The endothelin-1 (ET-1) receptors (ET-1R), known as ETA receptor (ETAR) and ETB receptor (ETBR) that belong to the GPCR superfamily, affect both cancer initiation and progression in a variety of cancer types. By the cross-talking with multiple signaling pathways mainly through the scaffold protein β-arrestin1 (β-arr1), ET-1R axis cooperates with an array of molecular determinants, including transcription factors and co-factors, strongly affecting tumor cell fate and behavior. In this scenario, recent findings shed light on the interplay between ET-1 and the Hippo pathway. In ETAR highly expressing tumors ET-1 axis induces the de-phosphorylation and nuclear accumulation of the Hippo pathway downstream effectors, the paralogous transcriptional cofactors Yes-associated protein (YAP) and Transcriptional coactivator with PDZ-binding motif (TAZ). Recent evidence have discovered that ET-1R/β-arr1 axis instigates a transcriptional interplay involving YAP and mutant p53 proteins, which share a common gene signature and cooperate in a oncogenic signaling network. Mechanistically, YAP and mutp53 are enrolled in nuclear complexes that turn on a highly selective YAP/mutp53-dependent transcriptional response. Notably, ET-1R blockade by the FDA approved dual ET-1 receptor antagonist macitentan interferes with ET-1R/YAP/mutp53 signaling interplay, through the simultaneous suppression of YAP and mutp53 functions, hampering metastasis and therapy resistance. Based on these evidences, we aim to review the recent findings linking the GPCR signaling, as for ET-1R, to YAP/TAZ signaling, underlining the clinical relevance of the blockade of such signaling network in the tumor and microenvironmental contexts. In particular, we debate the clinical implications regarding the use of dual ET-1R antagonists to blunt gain of function activity of mutant p53 proteins and thereby considering them as a potential therapeutic option for mutant p53 cancers. The identification of ET-1R/β-arr1-intertwined and bi-directional signaling pathways as targetable vulnerabilities, may open new therapeutic approaches able to disable the ET-1R-orchestrated YAP/mutp53 signaling network in both tumor and stromal cells and concurrently sensitizes to high-efficacy combined therapeutics.
Insights
Targeting G protein-coupled receptors (GPCRs) like endothelin-1 receptors (ET-1R) can inhibit cancer progression. Blocking ET-1R disrupts the YAP/mutant p53 signaling network, offering a new therapeutic strategy for cancers.
Area of Science:
- Oncology
- Molecular Biology
- Pharmacology
Background:
- G protein-coupled receptors (GPCRs) are key drivers in cancer progression.
- Endothelin-1 receptors (ET-1R), a type of GPCR, influence various cancer types.
- ET-1R signaling interacts with pathways like Hippo, affecting tumor cell behavior.
Purpose of the Study:
- To review recent findings on the link between GPCR signaling (ET-1R) and YAP/TAZ signaling.
- To highlight the clinical relevance of blocking this signaling network in tumors.
- To discuss the potential of dual ET-1R antagonists for mutant p53 cancers.
Main Methods:
- Review of recent scientific literature on ET-1R, Hippo pathway, YAP, TAZ, and mutant p53.
- Analysis of the interplay between ET-1R/β-arrestin1 axis and YAP/mutant p53.
- Examination of macitentan's effect on ET-1R/YAP/mutant p53 signaling.
Main Results:
- ET-1R signaling promotes nuclear accumulation of YAP and TAZ in tumors.
- ET-1R/β-arrestin1 axis creates a transcriptional interplay with mutant p53.
- ET-1R blockade with macitentan suppresses YAP and mutant p53, inhibiting metastasis and resistance.
Conclusions:
- The ET-1R/YAP/mutant p53 axis is a critical oncogenic signaling network.
- Dual ET-1R antagonists show promise in targeting mutant p53 cancers.
- Targeting ET-1R-orchestrated signaling offers new therapeutic avenues for cancer treatment.
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