Suppression of Adaptive Responses to Targeted Cancer Therapy by Transcriptional Repression
Maria Rusan1,2,3, Kapsok Li1,4, Yvonne Li1,3
1Department of Medical Oncology, Dana-Farber Cancer Institute, Boston, Massachusetts.
Abstract:
Acquired drug resistance is a major factor limiting the effectiveness of targeted cancer therapies. Targeting tumors with kinase inhibitors induces complex adaptive programs that promote the persistence of a fraction of the original cell population, facilitating the eventual outgrowth of inhibitor-resistant tumor clones. We show that the addition of a newly identified CDK7/12 inhibitor, THZ1, to targeted therapy enhances cell killing and impedes the emergence of drug-resistant cell populations in diverse cellular and in vivo cancer models. We propose that targeted therapy induces a state of transcriptional dependency in a subpopulation of cells poised to become drug tolerant, which THZ1 can exploit by blocking dynamic transcriptional responses, promoting remodeling of enhancers and key signaling outputs required for tumor cell survival in the setting of targeted therapy. These findings suggest that the addition of THZ1 to targeted therapies is a promising broad-based strategy to hinder the emergence of drug-resistant cancer cell populations.Significance: CDK7/12 inhibition prevents active enhancer formation at genes, promoting resistance emergence in response to targeted therapy, and impedes the engagement of transcriptional programs required for tumor cell survival. CDK7/12 inhibition in combination with targeted cancer therapies may serve as a therapeutic paradigm for enhancing the effectiveness of targeted therapies. Cancer Discov; 8(1); 59-73. ©2017 AACR.See related commentary by Carugo and Draetta, p. 17This article is highlighted in the In This Issue feature, p. 1.
Insights
Adding CDK7/12 inhibitor THZ1 to targeted cancer therapies enhances tumor cell killing and prevents the emergence of drug-resistant populations. This combination therapy offers a promising strategy to overcome acquired drug resistance in cancer treatment.
Area of Science:
- Oncology
- Molecular Biology
- Drug Discovery
Background:
- Acquired drug resistance limits the effectiveness of targeted cancer therapies.
- Targeted therapies can induce adaptive programs that lead to drug-resistant tumor clones.
Purpose of the Study:
- To investigate the efficacy of combining a CDK7/12 inhibitor, THZ1, with targeted therapy.
- To determine if THZ1 can prevent the emergence of drug-resistant cancer cell populations.
Main Methods:
- Utilized diverse cellular and in vivo cancer models.
- Administered targeted therapy in combination with the CDK7/12 inhibitor THZ1.
Main Results:
- The combination of THZ1 and targeted therapy enhanced cancer cell killing.
- THZ1 addition impeded the development of drug-resistant cell populations.
- CDK7/12 inhibition blocked dynamic transcriptional responses and remodeling of enhancers.
Conclusions:
- Combining THZ1 with targeted therapies is a promising strategy to overcome acquired drug resistance.
- CDK7/12 inhibition hinders transcriptional programs essential for tumor cell survival under targeted therapy.
- This combination may represent a new therapeutic paradigm for enhancing targeted cancer therapy effectiveness.
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