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In Vitro and In Vivo Assessment of T, B and Myeloid Cells Suppressive Activity and Humoral Responses from Transplant Recipients
Published on: August 12, 2017
BET Proteins: An Approach to Future Therapies in Transplantation
B Suarez-Alvarez1, R M Rodriguez1, M Ruiz-Ortega2
1Department of Immunology, Hospital Universitario Central de Asturias, Oviedo, Spain.
Abstract:
In order to develop new efficient therapies for organ transplantation, it is essential to acquire a comprehensive knowledge of the molecular mechanisms and processes, such as immune activation, chronic inflammation, and fibrosis, which lead to rejection and long-term graft loss. Recent efforts have shed some light on the epigenetic regulation associated with these processes. In this context, the bromo and extraterminal (BET) family of bromodomain proteins (BRD2, BRD3, BRD4, and BRDT) have emerged as major epigenetic players, connecting chromatin structure with gene expression changes. These proteins recognize acetylated lysines in histones and master transcription factors to recruit regulatory complex and, finally, modify the transcriptional program. Recent studies indicate that BET proteins are essential in the NF-kB-mediated inflammatory response, during the activation and differentiation of Th17-immune cells, and in profibrotic processes. Here, we review this new body of data and highlight the efficiency of BET inhibitors in several models of diseases. The promising results obtained from these preclinical models indicate that it may be time to translate these outcomes to the transplantation field, where epigenetics will be of increasing value in the coming years.
Insights
Bromo and extraterminal (BET) proteins regulate gene expression in inflammation and fibrosis, crucial for organ transplant rejection. BET inhibitors show promise in preclinical models, suggesting potential for new transplant therapies.
Area of Science:
- Epigenetics and molecular biology
- Transplantation immunology
- Drug discovery
Background:
- Organ transplant rejection involves immune activation, inflammation, and fibrosis.
- Epigenetic regulation plays a role in these rejection processes.
- The bromo and extraterminal (BET) protein family are key epigenetic regulators.
Purpose of the Study:
- To review the role of BET proteins in molecular mechanisms of organ transplant rejection.
- To highlight the therapeutic potential of BET inhibitors in transplantation.
Main Methods:
- Review of recent scientific literature on BET proteins, epigenetics, and transplantation.
- Analysis of data from preclinical models investigating BET inhibitors in disease.
Main Results:
- BET proteins are essential regulators of inflammatory and profibrotic processes.
- BET inhibitors have demonstrated efficacy in various preclinical disease models.
- These findings suggest a significant role for epigenetics in future transplantation strategies.
Conclusions:
- BET proteins are critical epigenetic mediators in pathways leading to organ transplant rejection.
- BET inhibitors represent a promising therapeutic avenue for improving transplant outcomes.
- Targeting epigenetic mechanisms offers a novel strategy for enhancing long-term graft survival.
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