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Monitoring Hippo Signaling Pathway Activity Using a Luciferase-based Large Tumor Suppressor (LATS) Biosensor
Published on: September 13, 2018
Dmp53 activates the Hippo pathway to promote cell death in response to DNA damage
Julien Colombani1, Cédric Polesello, Filipe Josué
1Apoptosis and Proliferation Control Laboratory, Cancer Research UK, London Research Institute.
Abstract:
Developmental and environmental signals control a precise program of growth, proliferation, and cell death. This program ensures that animals reach, but do not exceed, their typical size . Understanding how cells sense the limits of tissue size and respond accordingly by exiting the cell cycle or undergoing apoptosis has important implications for both developmental and cancer biology. The Hippo (Hpo) pathway comprises the kinases Hpo and Warts/Lats (Wts), the adaptors Salvador (Sav) and Mob1 as a tumor suppressor (Mats), the cytoskeletal proteins Expanded and Merlin, and the transcriptional cofactor Yorkie (Yki) . This pathway has been shown to restrict cell division and promote apoptosis. The caspase repressor DIAP1 appears to be a primary target of the Hpo pathway in cell-death control. Firstly, Hpo promotes DIAP1 phosphorylation, likely decreasing its stability. Secondly, Wts phosphorylates and inactivates Yki, decreasing DIAP1 transcription. Although we understand some of the events downstream of the Hpo kinase, its mode of activation remains mysterious. Here, we show that Hpo can be activated by Ionizing Radiations (IR) in a Dmp53 (Drosophila melanogaster p53)-dependent manner and that Hpo is required (though not absolutely) for the cell death response elicited by IR or Dmp53 ectopic expression.
Insights
The Hippo (Hpo) pathway regulates tissue size by controlling cell division and death. Ionizing radiation (IR) activates Hpo signaling through Dmp53, influencing the cell death response.
Area of Science:
- Cell Biology
- Developmental Biology
- Cancer Biology
Background:
- Tissue size is precisely regulated by growth, proliferation, and cell death programs.
- Understanding cell size sensing is crucial for developmental and cancer biology.
- The Hippo (Hpo) pathway restricts cell division and promotes apoptosis, targeting DIAP1 and Yki.
Purpose of the Study:
- To elucidate the activation mechanism of the Hpo kinase.
- To investigate the role of Hpo in response to ionizing radiation (IR).
Main Methods:
- Investigated Hpo activation by Ionizing Radiations (IR).
- Examined the role of Dmp53 in Hpo activation.
- Assessed Hpo's requirement for IR-elicited cell death.
Main Results:
- Hpo activation by IR is dependent on Dmp53.
- Hpo is required for the cell death response induced by IR or Dmp53.
- The precise activation mechanism of Hpo kinase remains largely unknown.
Conclusions:
- Dmp53 mediates Hpo activation in response to IR.
- The Hpo pathway plays a role in IR-induced apoptosis.
- Further research is needed to fully understand Hpo activation and its downstream effects.
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