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Updated: Oct 12, 2025

Identification of Novel CK2 Kinase Substrates Using a Versatile Biochemical Approach
Published on: February 21, 2019
NUAK family kinase 2 is a novel therapeutic target for prostate cancer
Weiwei Fu1, Megan T Zhao2, Lucy M Driver2
1Department of Pathology, The Affiliated Hospital of Qingdao University, Qingdao, China.
Abstract:
Current advancements in prostate cancer (PC) therapies have been successful in slowing PC progression and increasing life expectancy; however, there is still no curative treatment for advanced metastatic castration resistant PC (mCRPC). Most treatment options target the androgen receptor, to which many PCs eventually develop resistance. Thus, there is a dire need to identify and validate new molecular targets for treating PC. We found NUAK family kinase 2 (NUAK2) expression is elevated in PC and mCRPC versus normal tissue, and expression correlates with an increased risk of metastasis. Given this observation and because NUAK2, as a kinase, is actionable, we evaluated the potential of NUAK2 as a molecular target for PC. NUAK2 is a stress response kinase that also plays a role in activation of the YAP cotranscriptional oncogene. Combining pharmacological and genetic methods for modulating NUAK2, we found that targeting NUAK2 in vitro leads to reduction in proliferation, three-dimensional tumor spheroid growth, and matrigel invasion of PC cells. Differential gene expression analysis of PC cells treated NUAK2 small molecule inhibitor HTH-02-006 demonstrated that NUAK2 inhibition results in downregulation of E2F, EMT, and MYC hallmark gene sets after NUAK2 inhibition. In a syngeneic allograft model and in radical prostatectomy patient derived explants, NUAK2 inhibition slowed tumor growth and proliferation rates. Mechanistically, HTH-02-006 treatment led to inactivation of YAP and the downregulation of NUAK2 and MYC protein levels. Our results suggest that NUAK2 represents a novel actionable molecular target for PC that warrants further exploration.
Insights
NUAK2 is a promising new target for advanced prostate cancer (PC). Inhibiting NUAK2 reduces cancer cell growth and invasion, offering hope for more effective PC treatments.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Therapeutics
Background:
- Advanced prostate cancer (PC), particularly metastatic castration-resistant PC (mCRPC), lacks curative treatments.
- Current therapies often target the androgen receptor, leading to eventual treatment resistance.
- There is a critical need for novel molecular targets to overcome resistance and improve PC outcomes.
Purpose of the Study:
- To investigate the role of NUAK family kinase 2 (NUAK2) as a potential therapeutic target in prostate cancer.
- To evaluate the efficacy of targeting NUAK2 in preclinical models of PC.
Main Methods:
- Assessed NUAK2 expression in PC and mCRPC tissues.
- Utilized pharmacological and genetic methods to inhibit NUAK2 in vitro and in vivo.
- Administered NUAK2 inhibitor HTH-02-006 to cell lines, patient-derived explants, and allograft models.
- Performed differential gene expression analysis and assessed protein levels of YAP and MYC.
Main Results:
- NUAK2 expression is elevated in PC and mCRPC and correlates with metastatic risk.
- Inhibition of NUAK2 reduced PC cell proliferation, spheroid growth, and invasion in vitro.
- NUAK2 inhibition downregulated E2F, EMT, and MYC gene sets.
- Targeting NUAK2 slowed tumor growth and proliferation in preclinical models.
- Pharmacological inhibition inactivated YAP and decreased NUAK2 and MYC protein levels.
Conclusions:
- NUAK2 is an actionable molecular target for prostate cancer.
- Targeting NUAK2 demonstrates therapeutic potential for advanced and resistant PC.
- Further research into NUAK2 inhibition is warranted for developing new PC therapies.
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