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Mechanism for mutational inactivation of the tumor suppressor Smad2
C Prunier1, N Ferrand, B Frottier
1INSERM U 482, Hôpital Saint-Antoine, 75571 Paris Cedex 12, France.
Abstract:
Transforming growth factor beta (TGF-beta) is a potent natural antiproliferative agent that plays an important role in suppressing tumorigenicity. In numerous tumors, loss of TGF-beta responsiveness is associated with inactivating mutations that can occur in components of this signaling pathway, such as the tumor suppressor Smad2. Although a general framework for how Smads transduce TGF-beta signals has been proposed, the physiological relevance of alterations of Smad2 functions in promoting tumorigenesis is still unknown. Here, we show that expression of Smad2.P445H, a tumor-derived mutation of Smad2 found in human cancer, suppresses the ability of the Smads to mediate TGF-beta-induced growth arrest and transcriptional responses. Smad2.P445H is phosphorylated by the activated TGF-beta receptor at the carboxy-terminal serine residues and associates with Smad3 and Smad4 but is unable to dissociate from the receptor. Upon ligand-induced phosphorylation, Smad2.P445H interacts stably with wild-type Smad2, thereby blocking TGF-beta-induced nuclear accumulation of wild-type Smad2 and Smad2-dependent transcription. The ability of the Smad2.P445H to block the nuclear accumulation of wild-type Smad2 protein reveals a new mechanism for loss of sensitivity to the growth-inhibitory functions of TGF-beta in tumor development.
Insights
A cancer-linked mutation in Smad2 protein (Smad2.P445H) blocks transforming growth factor beta (TGF-beta) signaling, hindering its tumor-suppressing abilities. This discovery reveals a new way cancer cells evade TGF-beta
Area of Science:
- Molecular Biology
- Cell Signaling
- Oncology
Background:
- Transforming growth factor beta (TGF-beta) is a key tumor suppressor.
- Loss of TGF-beta responsiveness in tumors often results from mutations in signaling components like Smad2.
- The precise role of Smad2 alterations in promoting cancer is not fully understood.
Purpose of the Study:
- To investigate the functional consequences of a specific tumor-derived Smad2 mutation (Smad2.P445H) on TGF-beta signaling.
- To elucidate the mechanism by which Smad2.P445H affects TGF-beta-mediated cellular responses.
Main Methods:
- Expression of Smad2.P445H in cells.
- Analysis of TGF-beta-induced growth arrest and transcriptional activity.
- Assessment of Smad protein interactions and subcellular localization.
Main Results:
- Smad2.P445H expression impairs TGF-beta-induced growth arrest and gene transcription.
- The mutant Smad2.P445H protein binds to the TGF-beta receptor but cannot dissociate.
- Smad2.P445H forms stable complexes with wild-type Smad2, preventing its nuclear translocation.
Conclusions:
- The Smad2.P445H mutation disrupts TGF-beta signaling by sequestering wild-type Smad2.
- This mechanism of blocking Smad2 nuclear accumulation contributes to tumor development by reducing TGF-beta sensitivity.