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Updated: Jun 2, 2026

Monitoring Hippo Signaling Pathway Activity Using a Luciferase-based Large Tumor Suppressor (LATS) Biosensor
Published on: September 13, 2018
Salvador protein is a tumor suppressor effector of RASSF1A with hippo pathway-independent functions
Howard Donninger1, Nadia Allen, Adrianna Henson
1Department of Medicine, JG Brown Cancer Center, Molecular Targets Program, CTR Building, University of Louisville, Louisville, Kentucky 40202, USA.
Abstract:
The RASSF1A tumor suppressor binds and activates proapoptotic MST kinases. The Salvador adaptor protein couples MST kinases to the LATS kinases to form the hippo pathway. Upon activation by RASSF1A, LATS1 phosphorylates the transcriptional regulator YAP, which binds to p73 and activates its proapoptotic effects. However, although serving as an adaptor for MST and LATS, Salvador can also bind RASSF1A. The functional role of the RASSF1A/Salvador interaction is unclear. Although Salvador is a novel tumor suppressor in Drosophila and mice, its role in human systems remains largely unknown. Here we show that Salvador promotes apoptosis in human cells and that Salvador inactivation deregulates the cell cycle and enhances the transformed phenotype. Moreover, we show that although the salvador gene is seldom mutated or epigenetically inactivated in human cancers, it is frequently down-regulated posttranscriptionally. Surprisingly, we also find that although RASSF1A requires the presence of Salvador for full apoptotic activity and to activate p73, this effect does not require a direct interaction of RASSF1A with MST kinases or the activation of the hippo pathway. Thus, we confirm a role for Salvador as a human tumor suppressor and RASSF1A effector and show that Salvador allows RASSF1A to modulate p73 independently of the hippo pathway.
Insights
The Salvador protein promotes apoptosis in human cells and acts as a tumor suppressor. It enables RASSF1A to regulate p73 independently of the hippo pathway, confirming its role in human cancer.
Area of Science:
- Molecular Biology
- Cell Biology
- Oncology
Background:
- The RASSF1A tumor suppressor activates proapoptotic MST kinases.
- The Salvador adaptor protein links MST and LATS kinases, forming the hippo pathway.
- RASSF1A-mediated LATS1 activation of YAP leads to p73-dependent apoptosis.
Purpose of the Study:
- To investigate the functional role of the RASSF1A/Salvador interaction in human cells.
- To determine Salvador's role as a tumor suppressor in human systems.
- To elucidate the mechanism by which RASSF1A and Salvador modulate p73.
Main Methods:
- Cell-based assays to assess apoptosis and cell cycle regulation.
- Analysis of Salvador gene expression in human cancers.
- Investigating protein interactions and pathway activation.
Main Results:
- Salvador promotes apoptosis in human cells and its inactivation deregulates the cell cycle.
- The salvador gene is frequently down-regulated posttranscriptionally in human cancers.
- RASSF1A requires Salvador for full apoptotic activity and p73 activation, independent of hippo pathway activation.
Conclusions:
- Salvador functions as a human tumor suppressor and RASSF1A effector.
- Salvador enables RASSF1A to modulate p73 independently of the hippo pathway.
- Posttranscriptional down-regulation of Salvador contributes to human cancers.
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