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Published on: October 27, 2014
Potent and Selective CK2 Kinase Inhibitors with Effects on Wnt Pathway Signaling in Vivo
James E Dowling1, Marat Alimzhanov1, Larry Bao1
1Oncology Innovative Medicines Unit, AstraZeneca R&D , 35 Gatehouse Drive, Waltham, Massachusetts 02451, United States.
Abstract:
The Wnt pathway is an evolutionarily conserved and tightly regulated signaling network with important roles in embryonic development and adult tissue regeneration. Impaired Wnt pathway regulation, arising from mutations in Wnt signaling components, such as Axin, APC, and β-catenin, results in uncontrolled cell growth and triggers oncogenesis. To explore the reported link between CK2 kinase activity and Wnt pathway signaling, we sought to identify a potent, selective inhibitor of CK2 suitable for proof of concept studies in vivo. Starting from a pyrazolo[1,5-a]pyrimidine lead (2), we identified compound 7h, a potent CK2 inhibitor with picomolar affinity that is highly selectivity against other kinase family enzymes and inhibits Wnt pathway signaling (IC50 = 50 nM) in DLD-1 cells. In addition, compound 7h has physicochemical properties that are suitable for formulation as an intravenous solution, has demonstrated good pharmacokinetics in preclinical species, and exhibits a high level of activity as a monotherapy in HCT-116 and SW-620 xenografts.
Insights
Researchers identified compound 7h, a potent and selective inhibitor of casein kinase 2 (CK2), which effectively targets the Wnt pathway. This compound shows promise for cancer therapy by inhibiting uncontrolled cell growth and tumor development.
Area of Science:
- Biochemistry
- Molecular Biology
- Oncology
Background:
- The Wnt pathway is crucial for embryonic development and tissue regeneration.
- Dysregulation of Wnt signaling, often due to mutations in key proteins, is linked to cancer development.
- Casein kinase 2 (CK2) activity has been implicated in Wnt pathway signaling, suggesting it as a potential therapeutic target.
Purpose of the Study:
- To identify a potent and selective inhibitor of CK2 for in vivo studies.
- To investigate the link between CK2 activity and Wnt pathway signaling.
- To develop a novel therapeutic strategy for Wnt-driven cancers.
Main Methods:
- Utilized a pyrazolo[1,5-a]pyrimidine scaffold to design and synthesize potential CK2 inhibitors.
- Evaluated CK2 inhibitory activity and selectivity against other kinases.
- Assessed Wnt pathway inhibition in DLD-1 cancer cells.
- Conducted pharmacokinetic and efficacy studies in preclinical cancer models (HCT-116 and SW-620 xenografts).
Main Results:
- Identified compound 7h, a potent CK2 inhibitor with picomolar affinity and high selectivity.
- Compound 7h demonstrated significant inhibition of Wnt pathway signaling in DLD-1 cells (IC50 = 50 nM).
- Compound 7h possesses suitable physicochemical properties for intravenous formulation and exhibits favorable pharmacokinetics.
- Demonstrated potent anti-tumor activity as a monotherapy in HCT-116 and SW-620 xenograft models.
Conclusions:
- Compound 7h is a highly potent and selective CK2 inhibitor with demonstrated Wnt pathway inhibitory activity.
- Compound 7h shows promising preclinical efficacy as a monotherapy for Wnt-driven cancers.
- The favorable pharmacokinetic profile and in vivo activity support further development of compound 7h for cancer treatment.
Related Concept Videos
Canonical Wnt Signaling Pathway
Canonical Wnt Signaling Pathway
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Non-Canonical Wnt Signaling Pathways
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