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Published on: August 12, 2015
Putting the BRK on breast cancer: From molecular target to therapeutics
Hui Li Ang1, Yi Yuan1, Xianning Lai2
1Cancer Science Institute of Singapore and Department of Pharmacology, Yong Loo Lin School of Medicine, National University of Singapore, Singapore.
Abstract:
BReast tumor Kinase (BRK, also known as PTK6) is a non-receptor tyrosine kinase that is highly expressed in breast carcinomas while having low expression in the normal mammary gland, which hints at the oncogenic nature of this kinase in breast cancer. In the past twenty-six years since the discovery of BRK, an increasing number of studies have strived to understand the cellular roles of BRK in breast cancer. Since then, BRK has been found both in vitro and in vivo to activate a multitude of oncoproteins to promote cell proliferation, metastasis, and cancer development. The compelling evidence concerning the oncogenic roles of BRK has also led, since then, to the rapid and exponential development of inhibitors against BRK. This review highlights recent advances in BRK biology in contributing to the "hallmarks of cancer", as well as BRK's therapeutic significance. Importantly, this review consolidates all known inhibitors of BRK activity and highlights the connection between drug action and BRK-mediated effects. Despite the volume of inhibitors designed against BRK, none have progressed into clinical phase. Understanding the successes and challenges of these inhibitor developments are crucial for the future improvements of new inhibitors that can be clinically relevant.
Insights
BReast tumor Kinase (BRK) promotes breast cancer growth and metastasis. While many BRK inhibitors exist, none have reached clinical trials, highlighting the need for improved therapeutic strategies.
Area of Science:
- Oncology
- Biochemistry
- Molecular Biology
Background:
- BReast tumor Kinase (BRK, PTK6) is a non-receptor tyrosine kinase.
- BRK is highly expressed in breast carcinomas but minimally in normal mammary glands, suggesting its oncogenic role.
- BRK activates oncoproteins, promoting cancer cell proliferation and metastasis.
Purpose of the Study:
- To review recent advances in BRK biology and its contribution to cancer hallmarks.
- To consolidate known BRK inhibitors and analyze their therapeutic significance.
- To understand challenges in BRK inhibitor development for clinical relevance.
Main Methods:
- Literature review of BRK biology and inhibitor studies.
- Analysis of BRK's role in cancer hallmarks (proliferation, metastasis).
- Consolidation and comparison of existing BRK inhibitors.
Main Results:
- BRK significantly contributes to breast cancer development and progression.
- Numerous BRK inhibitors have been developed, targeting its oncogenic activity.
- No BRK inhibitors have successfully progressed to clinical trials to date.
Conclusions:
- BRK is a validated therapeutic target in breast cancer.
- Despite extensive inhibitor development, clinical translation remains a challenge.
- Further research is needed to overcome hurdles and develop clinically effective BRK inhibitors.
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