Current strategies and progress for targeting the "undruggable" transcription factors
Jing-Jing Zhuang1,2, Qian Liu3, Da-Lei Wu4
1Marine College, Shandong University, Weihai, 264209, China.
Abstract:
Transcription factors (TFs) specifically bind to DNA, recruit cofactor proteins and modulate target gene expression, rendering them essential roles in the regulation of numerous biological processes. Meanwhile, mutated or dysregulated TFs are involved in a variety of human diseases. As multiple signaling pathways ultimately converge at TFs, targeting these TFs directly may prove to be more specific and cause fewer side effects, than targeting the upfront conventional targets in these pathways. All these features together endue TFs with great potential and high selectivity as therapeutic drug targets. However, TFs have been historically considered "undruggable", mainly due to their lack of structural information, especially about the appropriate ligand-binding sites and protein-protein interactions, leading to relatively limited choices in the TF-targeting drug design. In this review, we summarize the recent progress of TF-targeting drugs and highlight certain strategies used for targeting TFs, with a number of representative drugs that have been approved or in the clinical trials as examples. Various approaches in targeting TFs directly or indirectly have been developed. Common direct strategies include aiming at defined binding pockets, proteolysis-targeting chimaera (PROTAC), and mutant protein reactivation. In contrast, the indirect ones comprise inhibition of protein-protein interactions between TF and other proteins, blockade of TF expression, targeting the post-translational modifications, and targeting the TF-DNA interactions. With more comprehensive structural information about TFs revealed by the powerful cryo-electron microscopy technology and predicted by machine-learning algorithms, plus more efficient compound screening platforms and a deeper understanding of TF-disease relationships, the development of TF-targeting drugs will certainly be accelerated in the near future.
Insights
Transcription factors (TFs) are crucial regulators of gene expression and implicated in diseases. This review highlights strategies for developing TF-targeting drugs, overcoming historical challenges in drug design.
Area of Science:
- Molecular Biology
- Drug Discovery
- Genetics
Background:
- Transcription factors (TFs) regulate gene expression and are implicated in various human diseases.
- Targeting TFs offers potential for specific therapies with fewer side effects compared to conventional targets.
- Historically, TFs were considered undruggable due to limited structural and interaction data.
Purpose of the Study:
- To review recent advancements in TF-targeting drugs.
- To highlight strategies for targeting TFs directly and indirectly.
- To showcase approved or clinical trial-stage TF-targeting drugs as examples.
Main Methods:
- Direct strategies: targeting binding pockets, proteolysis-targeting chimaera (PROTAC), mutant protein reactivation.
- Indirect strategies: inhibiting TF-protein interactions, blocking TF expression, targeting post-translational modifications, and TF-DNA interactions.
- Leveraging cryo-electron microscopy and machine learning for structural insights.
Main Results:
- Various direct and indirect strategies have been developed for TF targeting.
- Representative drugs targeting TFs are progressing through clinical trials.
- Improved structural information and screening platforms are accelerating drug development.
Conclusions:
- TF-targeting drugs hold significant therapeutic potential due to their specificity.
- Overcoming historical challenges is enabling the development of novel TF-targeting therapies.
- Future advancements in structural biology and AI will further accelerate the development of TF-targeting drugs.
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