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ATAD2 in cancer: a pharmacologically challenging but tractable target
Muzammal Hussain1,2,3, Yang Zhou4, Yu Song5
1a State Key Laboratory of Respiratory Disease , Guangzhou Institutes of Biomedicine and Heath, Chinese Academy of Sciences , Guangzhou , PR China.
Introduction:
ATAD2 protein is an emerging oncogene that has strongly been linked to the etiology of multiple advanced human cancers. Therapeutically, despite the fact that genetic suppression/knockdown studies have validated it as a compelling drug target for future therapeutic development, recent druggability assessment data suggest that direct targeting of ATAD2's bromodomain (BRD) may be a very challenging task. ATAD2's BRD has been predicted as a 'difficult to drug' or 'least druggable' target due to the concern that its binding pocket, and the areas around it, seem to be unfeasible for ligand binding. Areas covered: In this review, after shedding light on the multifaceted roles of ATAD2 in normal physiology as well as in cancer-etiology, we discuss technical challenges rendered by ATAD2's BRD active site and the recent drug discovery efforts to find small molecule inhibitors against it. Expert opinion: The identification of a novel low-nanomolar semi-permeable chemical probe against ATAD2's BRD by recent drug discovery campaign has demonstrated it to be a pharmacologically tractable target. Nevertheless, the development of high quality bioavailable inhibitors against ATAD2 is still a pending task. Moreover, ATAD2 may also potentially be utilized as a promising target for future development of RNAi-based therapy to treat cancers.
Insights
The ATAD2 protein is linked to many cancers but is difficult to target. Recent research shows it is druggable, with new inhibitors developed, though more bioavailable options are needed.
Area of Science:
- Oncology
- Drug Discovery
- Molecular Biology
Background:
- ATAD2 protein is an emerging oncogene implicated in various advanced human cancers.
- Genetic studies confirm ATAD2 as a viable drug target, but its bromodomain (BRD) presents significant druggability challenges.
- The ATAD2 BRD's binding pocket is considered difficult to target with ligands, classifying it as 'least druggable'.
Purpose of the Study:
- To review the roles of ATAD2 in normal physiology and cancer.
- To discuss the technical challenges in targeting the ATAD2 BRD.
- To summarize recent drug discovery efforts for ATAD2 inhibitors.
Main Methods:
- Literature review of ATAD2's function and druggability.
- Analysis of challenges associated with ATAD2's bromodomain active site.
- Summary of recent small molecule inhibitor discovery campaigns.
Main Results:
- A novel, low-nanomolar, semi-permeable chemical probe for ATAD2's BRD has been identified.
- This probe validates ATAD2 as a pharmacologically tractable target.
- Development of high-quality, bioavailable ATAD2 inhibitors remains an ongoing challenge.
Conclusions:
- Despite challenges, ATAD2 is a validated and druggable cancer target.
- Further research is needed to develop effective bioavailable inhibitors.
- ATAD2 also shows promise as a target for RNAi-based cancer therapies.
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