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Updated: Jun 28, 2026

Inducible and Reversible Dominant-negative (DN) Protein Inhibition
Published on: January 7, 2019
Retinoblastoma loss modulates DNA damage response favoring tumor progression
Marcos Seoane1, Pablo Iglesias, Teresa Gonzalez
1Molecular Oncology Lab, Departamento de Fisioloxia, Facultade de Medicina, Universidade de Santiago de Compostela, Santiago de Compostela, Spain.
Abstract:
Senescence is one of the main barriers against tumor progression. Oncogenic signals in primary cells result in oncogene-induced senescence (OIS), crucial for protection against cancer development. It has been described in premalignant lesions that OIS requires DNA damage response (DDR) activation, safeguard of the integrity of the genome. Here we demonstrate how the cellular mechanisms involved in oncogenic transformation in a model of glioma uncouple OIS and DDR. We use this tumor type as a paradigm of oncogenic transformation. In human gliomas most of the genetic alterations that have been previously identified result in abnormal activation of cell growth signaling pathways and deregulation of cell cycle, features recapitulated in our model by oncogenic Ras expression and retinoblastoma (Rb) inactivation respectively. In this scenario, the absence of pRb confers a proliferative advantage and activates DDR to a greater extent in a DNA lesion-independent fashion than cells that express only HRas(V12). Moreover, Rb loss inactivates the stress kinase DDR-associated p38MAPK by specific Wip1-dependent dephosphorylation. Thus, Rb loss acts as a switch mediating the transition between premalignant lesions and cancer through DDR modulation. These findings may have important implications for the understanding the biology of gliomas and anticipate a new target, Wip1 phosphatase, for novel therapeutic strategies.
Insights
Oncogene-induced senescence (OIS) normally prevents cancer. In gliomas, however, Rb loss decouples OIS from DNA damage response (DDR), promoting tumor growth and inactivating p38MAPK via Wip1 phosphatase.
Area of Science:
- Oncology
- Cellular Biology
- Molecular Mechanisms of Cancer
Background:
- Senescence acts as a tumor suppressor mechanism.
- Oncogene-induced senescence (OIS) is a key anti-cancer response.
- DNA damage response (DDR) activation is critical for OIS in premalignant lesions.
Purpose of the Study:
- To investigate how cellular mechanisms in glioma uncouple OIS and DDR.
- To utilize a glioma model to understand oncogenic transformation.
- To identify key molecular players and pathways involved in glioma progression.
Main Methods:
- Utilized a glioma model with oncogenic Ras expression and retinoblastoma (Rb) inactivation.
- Compared DDR activation in cells with and without Rb.
- Assessed the role of Wip1 phosphatase in DDR modulation and p38MAPK activity.
Main Results:
- Rb loss, unlike HRas(V12) expression alone, confers proliferative advantage and enhances DDR independently of DNA lesions.
- Rb loss leads to inactivation of the DDR-associated p38MAPK.
- This inactivation occurs via Wip1-dependent dephosphorylation, decoupling OIS and DDR.
Conclusions:
- Rb loss acts as a critical switch in glioma, transitioning cells from premalignant to cancerous states by modulating DDR.
- The findings highlight the interplay between Rb, DDR, and Wip1 phosphatase in glioma biology.
- Wip1 phosphatase emerges as a potential therapeutic target for glioma treatment.
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