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Design of small molecules targeting transcriptional activation by NF-κB: overview of recent advances
1University of California, Division of Biomedical Sciences, Riverside, CA 92521-0121, USA +1 951 827 5612 ; +1 951 827 5504 ; straus@ucr.edu.
Background:
The transcription factor NF-κB plays a central role in immune signaling and the inflammatory response. It also activates transcription of antiapoptotic factors in tumor cells, leading to enhanced cell survival. Because of the importance of NF-κB in inflammation and cancer, there is considerable interest in development of drugs that inhibit NF-κB activation or NF-κB-directed transcription. Recent elucidation of the intracellular pathways that activate NF-κB and mechanisms for transcriptional regulation by NF-κB has identified molecular targets for rational design of such drugs.
Objective:
This review provides an update on NF-κB signaling and an overview of three classes of NF-κB inhibitors: i) inhibitors of IκB kinase-β (also called IKK2), an essential link in the inflammatory response; ii) agents that react with NF-κB and prevent its binding to DNA; and iii) ligands for nuclear receptors such as the glucocorticoid receptor, PPARs and liver X receptor, which interfere with NF-κB-mediated transcription through a mechanism termed ligand-dependent transrepression. Recent progress in development of glucocorticoid receptor, PPAR and liver X receptor ligands with dissociated activity, which retain transrepression but have reduced transactivation potency, is also described.
Conclusions:
NF-κB inhibitors have yielded promising results in rodent models of inflammatory disease and cancer. Some of these are currently advancing into clinical trials.
Insights
Nuclear factor-kappa B (NF-κB) inhibitors show promise for treating inflammatory diseases and cancer. These drugs target key pathways and are advancing into clinical trials, offering new therapeutic possibilities.
Area of Science:
- Molecular Biology
- Immunology
- Oncology
Background:
- Nuclear factor-kappa B (NF-κB) is a transcription factor crucial for immune responses and inflammation.
- NF-κB promotes tumor cell survival by activating antiapoptotic factors, contributing to cancer progression.
- Targeting NF-κB activation or transcription is a significant area of drug development for inflammation and cancer.
Purpose of the Study:
- To review current NF-κB signaling pathways.
- To provide an overview of three classes of NF-κB inhibitors.
- To discuss recent advancements in developing targeted NF-κB therapies.
Main Methods:
- Review of literature on NF-κB signaling pathways and inhibitors.
- Categorization of inhibitors based on their mechanism of action.
- Discussion of nuclear receptor ligands and their role in modulating NF-κB activity.
Main Results:
- Inhibitors targeting IκB kinase-β (IKK2) are effective in blocking inflammatory signaling.
- Agents that prevent NF-κB DNA binding offer a direct approach to inhibit transcription.
- Nuclear receptor ligands, like glucocorticoid receptor and PPARs, interfere with NF-κB transcription via ligand-dependent transrepression.
Conclusions:
- NF-κB inhibitors have demonstrated significant efficacy in preclinical models of inflammation and cancer.
- Development of selective ligands for nuclear receptors shows potential for targeted therapy with reduced side effects.
- Several NF-κB inhibitors are progressing into clinical trials, indicating their therapeutic potential.
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