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Oncogenic mechanisms of Evi-1 protein
H Hirai1, K Izutsu, M Kurokawa
1Department of Hematology and Oncology, Graduate School of Medicine, University of Tokyo, Hongo, Japan. hhirai-tky@umin.ac.jp
Abstract:
Although Evi-1 is thought to promote growth or block differentiation in some cell types, its biological functions have not been elucidated. To explore the mechanisms underlying Evi-1-induced oncogenesis, we investigated whether Evi-1 affects the signaling of transforming growth factor beta (TGF-beta), which inhibits proliferation of a wide range of cell types and is one of the most studied growth regulatory factors. We demonstrated that Evi-1 represses TGF-beta signaling and antagonizes its growth-inhibitory effects. Two separate regions of Evi-1 are responsible for this repression, one of which is the first zinc-finger domain. Through this domain, Evi-1 physically interacts with Smad3, an intracellular mediator of TGF-beta signaling, thereby suppressing the transcriptional activity of Smad3. These results define a novel function of Evi-1 as a repressor of signaling components of TGF-beta. We also demonstrated that Evi-1 represses Smad-induced transcriptional activation by recruiting CtBP as a corepressor. Evi-1 associates with CtBP1 through one of the CtBP-binding consensus motifs within the region from amino acid 544 to 607, and this association is required for the efficient inhibition of TGF-beta signaling. A specific histone deacetylase (HDAc) inhibitor, trichostatin A (TSA), alleviates Evi-1-mediated repression of TGF-beta signaling, suggesting that HDAc is involved in transcriptional repression by Evi-1. This identifies a novel function of Evi-1 as a member of corepressor complexes and suggests that aberrant recruitment of corepressors is one of the mechanisms involved in Evi-1-induced leukemogenesis. These results indicate that specific HDAc inhibitors may be useful in the treatment of Evi-1-induced neoplastic tumors, including myeloid leukemias.
Insights
Evi-1 oncogenesis involves repressing transforming growth factor beta (TGF-beta) signaling by interacting with Smad3. Evi-1 recruits corepressors, including CtBP, and its repression is reversed by histone deacetylase (HDAc) inhibitors, suggesting therapeutic potential.
Area of Science:
- Molecular Biology
- Oncology
- Cell Signaling
Background:
- Evi-1's role in cell growth and differentiation is unclear.
- Transforming growth factor beta (TGF-beta) is a key inhibitor of cell proliferation.
- Understanding Evi-1's oncogenic mechanisms is crucial.
Purpose of the Study:
- Investigate Evi-1's effect on TGF-beta signaling pathways.
- Elucidate the molecular mechanisms by which Evi-1 contributes to oncogenesis.
- Explore potential therapeutic targets for Evi-1-driven cancers.
Main Methods:
- Assessed Evi-1's impact on TGF-beta signaling.
- Identified Evi-1 interaction domains with Smad3 and CtBP1.
- Utilized histone deacetylase (HDAc) inhibitors like trichostatin A (TSA).
Main Results:
- Evi-1 represses TGF-beta signaling and antagonizes its growth-inhibitory effects.
- Evi-1 interacts with Smad3 via its zinc-finger domain, suppressing Smad3 activity.
- Evi-1 recruits CtBP corepressors, and HDAc activity is involved in Evi-1-mediated repression.
Conclusions:
- Evi-1 functions as a novel repressor of TGF-beta signaling components.
- Aberrant recruitment of corepressors by Evi-1 contributes to leukemogenesis.
- HDAc inhibitors show potential for treating Evi-1-induced neoplastic tumors, including myeloid leukemias.