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Published on: October 27, 2020
Epigenetic Targeting of Transforming Growth Factor β Receptor II and Implications for Cancer Therapy
Sanjib Chowdhury1, Sudhakar Ammanamanchi, Gillian M Howell
1Eppley Institute for Research in Cancer, University of Nebraska Medical Center, 987696 Nebraska Medical Center, Omaha, Nebraska.
Abstract:
The transforming growth factor (TGF) β signaling pathway is involved in many cellular processes including proliferation, differentiation, adhesion, motility and apoptosis. The loss of TGFβ signaling occurs early in carcinogenesis and its loss contributes to tumor progression. The loss of TGFβ responsiveness frequently occurs at the level of the TGFβ type II receptor (TGFβRII) which has been identified as a tumor suppressor gene (TSG). In keeping with its TSG role, the loss of TGFβRII expression is frequently associated with high tumor grade and poor patient prognosis. Reintroduction of TGFβRII into tumor cell lines results in growth suppression. Mutational loss of TGFβRII has been characterized, particularly in a subset of colon cancers with DNA repair enzyme defects. However, the most frequent cause of TGFβRII silencing is through epigenetic mechanisms. Therefore, re-expression of TGFβRII by use of epigenetic therapies represents a potential therapeutic approach to utilizing the growth suppressive effects of the TGFβ signaling pathway. However, the restoration of TGFβ signaling in cancer treatment is challenging because in late stage disease, TGFβ is a pro-metastatic factor. This effect is associated with increased expression of the TGFβ ligand. In this Review, we discuss the mechanisms associated with TGFβRII silencing in cancer and the potential usefulness of histone deacetylase (HDAC) inhibitors in reversing this effect. The use of HDAC inhibitors may provide a unique opportunity to restore TGFβRII expression in tumors as their pleiotropic effects antagonize many of the cellular processes, which mediate the pro-metastatic effects associated with increased TGFβ expression.
Insights
Loss of transforming growth factor beta type II receptor (TGFβRII) signaling promotes cancer. Epigenetic silencing of TGFβRII is common, but histone deacetylase inhibitors may restore its tumor-suppressive function.
Area of Science:
- Oncology
- Molecular Biology
- Epigenetics
Background:
- Transforming growth factor (TGF) β signaling regulates crucial cellular processes, and its loss is an early event in carcinogenesis.
- Loss of TGFβ responsiveness, often due to TGFβ type II receptor (TGFβRII) silencing, correlates with tumor progression and poor prognosis.
- TGFβRII is a tumor suppressor gene (TSG), and its reintroduction into cancer cells inhibits growth.
Purpose of the Study:
- To review mechanisms of TGFβRII silencing in cancer.
- To explore the potential of epigenetic therapies, specifically histone deacetylase (HDAC) inhibitors, in restoring TGFβRII expression and function.
- To address the dual role of TGFβ signaling in cancer, acting as a tumor suppressor early on and a pro-metastatic factor later.
Main Methods:
- Review of existing literature on TGFβRII silencing mechanisms in various cancers.
- Analysis of the role of epigenetic modifications in TGFβRII gene silencing.
- Evaluation of the therapeutic potential of HDAC inhibitors in reversing TGFβRII silencing.
Main Results:
- Epigenetic silencing is the predominant mechanism for TGFβRII loss in cancer.
- Mutational loss of TGFβRII is observed in specific cancers, like colon cancer with DNA repair defects.
- HDAC inhibitors show promise in restoring TGFβRII expression by antagonizing pro-metastatic effects.
Conclusions:
- Re-expression of TGFβRII via epigenetic therapies is a potential strategy to leverage its tumor-suppressive functions.
- HDAC inhibitors offer a promising approach to counteract TGFβRII silencing and its associated pro-metastatic effects.
- Restoring TGFβ signaling through TGFβRII re-expression could be a valuable therapeutic avenue in cancer treatment.
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