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Published on: May 14, 2016
DNA-PK in human malignant disorders: Mechanisms and implications for pharmacological interventions
Michaela Medová1, Matúš Medo1, Lusine Hovhannisyan1
1Department of Radiation Oncology, Inselspital, Bern University Hospital, University of Bern, 3008 Bern, Switzerland; Department for BioMedical Research, Inselspital, Bern University Hospital, University of Bern, 3008 Bern, Switzerland.
Abstract:
The DNA-PK holoenzyme is a fundamental element of the DNA damage response machinery (DDR), which is responsible for cellular genomic stability. Consequently, and predictably, over the last decades since its identification and characterization, numerous pre-clinical and clinical studies reported observations correlating aberrant DNA-PK status and activity with cancer onset, progression and responses to therapeutic modalities. Notably, various studies have established in recent years the role of DNA-PK outside the DDR network, corroborating its role as a pleiotropic complex involved in transcriptional programs that operate biologic processes as epithelial to mesenchymal transition (EMT), hypoxia, metabolism, nuclear receptors signaling and inflammatory responses. In particular tumor entities as prostate cancer, immense research efforts assisted mapping and describing the overall signaling networks regulated by DNA-PK that control metastasis and tumor progression. Correspondingly, DNA-PK emerges as an obvious therapeutic target in cancer and data pertaining to various pharmacological approaches have been published, largely in context of combination with DNA-damaging agents (DDAs) that act by inflicting DNA double strand breaks (DSBs). Currently, new generation inhibitors are tested in clinical trials. Several excellent reviews have been published in recent years covering the biology of DNA-PK and its role in cancer. In the current article we are aiming to systematically describe the main findings on DNA-PK signaling in major cancer types, focusing on both preclinical and clinical reports and present a detailed current status of the DNA-PK inhibitors repertoire.
Insights
DNA-PK holoenzyme is crucial for genomic stability and cancer progression. This review details DNA-PK signaling in various cancers and its emerging role as a therapeutic target, highlighting new inhibitors.
Area of Science:
- Molecular Biology
- Oncology
- Biochemistry
Background:
- The DNA-PK holoenzyme is a key component of the DNA damage response (DDR) machinery, essential for maintaining genomic stability.
- Aberrant DNA-PK activity is linked to cancer development, progression, and treatment response.
- Emerging research reveals DNA-PK's broader roles beyond DDR, influencing processes like EMT, metabolism, and inflammation.
Purpose of the Study:
- To systematically review DNA-PK signaling pathways in major cancer types.
- To consolidate preclinical and clinical findings on DNA-PK's role in cancer.
- To provide an updated overview of DNA-PK inhibitors in cancer therapy.
Main Methods:
- Literature review of preclinical and clinical studies on DNA-PK in cancer.
- Analysis of signaling networks regulated by DNA-PK in various malignancies.
- Compilation of data on current and emerging DNA-PK inhibitors.
Main Results:
- DNA-PK plays a significant role in cancer progression, metastasis, and response to therapy across multiple tumor types.
- DNA-PK regulates critical cellular processes including EMT, metabolism, and inflammatory responses, extending its influence beyond DNA repair.
- Numerous pharmacological approaches targeting DNA-PK are under investigation, with new-generation inhibitors progressing through clinical trials.
Conclusions:
- DNA-PK is a validated and promising therapeutic target in oncology.
- Targeting DNA-PK, particularly in combination with DNA-damaging agents, holds potential for improved cancer treatment strategies.
- Further research into DNA-PK signaling and inhibitor development is crucial for advancing cancer therapy.
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