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Updated: Nov 18, 2025

Identification of Novel CK2 Kinase Substrates Using a Versatile Biochemical Approach
Published on: February 21, 2019
Comparing the efficacy and selectivity of Ck2 inhibitors. A phosphoproteomics approach
Christian Borgo1, Luca Cesaro1, Tsuyoshi Hirota2
1Department of Biomedical Sciences, University of Padua, Padova, Italy.
Abstract:
CK2 (an acronym derived from the misnomer "casein kinase 2") denotes a ubiquitous, highly pleiotropic protein kinase which has been implicated in global human pathologies, with special reference to cancer. A large spectrum of fairly selective, cell permeable CK2 inhibitors are available, one of which, CX4945 is already in clinical trials for the treatment of neoplasia. Another recently developed CK2 inhibitor, GO289, displays in vitro potency and selectivity comparable to CX4945. Here the cellular efficiency of these two inhibitors has been evaluated by treating C2C12 myoblasts for 5 h with each of them at 4 μM concentration and running a quantitative phosphoproteomics analysis of phosphosites affected by the two compounds. A small but significant proportion of the quantified phosphosites is decreased by treatment with CX4945 and, even more with GO289. This figure substantially increases if a subset of quantified phosphosites conforming to the CK2 consensus (pS/pT-x-x-D/E/pS/pT) is considered. Also in this case GO289 is more effective than CX4945. By adopting stringent criteria two shortlists of 70 and 35 sites whose phosphorylation is decreased >50% by GO289 and CX4945, respectively, have been generated. All these phosphosites conform to the consensus of CK2 with just sporadic exceptions. Their WebLogos are indistinguishable from that of bona fide CK2 phosphosites and their Two-Sample Logos rule out any significant contribution of Pro-directed and basophilic protein kinases to their generation. To sum up, we can conclude that by treating C2C12 cells for 5 h with either CX4945 or GO289 off-target effects are negligible since almost all the phosphosites undergoing a substantial reduction are attributable to CK2, with a higher inhibitory efficacy displayed by GO289. CX4945 and GO289 provide highly selective tools to control the CK2-dependent phosphoproteome compared with previously developed CK2 inhibitors.
Insights
The protein kinase CK2 (casein kinase 2) is crucial in human diseases like cancer. New inhibitors, GO289 and CX4945, show high selectivity, with GO289 being more effective at inhibiting CK2 activity in cells.
Area of Science:
- Biochemistry
- Molecular Biology
- Oncology
Background:
- Casein kinase 2 (CK2) is a vital protein kinase involved in numerous cellular processes.
- Dysregulation of CK2 activity is linked to various human pathologies, particularly cancer.
- Selective CK2 inhibitors are sought for therapeutic applications, with CX4945 already in clinical trials.
Purpose of the Study:
- To evaluate and compare the cellular efficacy of two CK2 inhibitors, CX4945 and GO289.
- To identify phosphosites affected by these inhibitors using quantitative phosphoproteomics.
- To assess the selectivity and off-target effects of GO289 and CX4945 in C2C12 myoblasts.
Main Methods:
- Treatment of C2C12 myoblasts with CX4945 and GO289 at 4 μM for 5 hours.
- Quantitative phosphoproteomics analysis to identify changes in protein phosphorylation.
- Bioinformatic analysis of affected phosphosites, including consensus sequence and kinase specificity.
Main Results:
- Both CX4945 and GO289 treatments led to a decrease in quantified phosphosites, with GO289 showing a greater effect.
- The reduction in phosphosites was significantly pronounced when considering those conforming to the CK2 consensus motif.
- Stringent criteria identified 70 and 35 phosphosites significantly reduced by GO289 and CX4945, respectively, with high attribution to CK2.
- Analysis of phosphosite sequences and logos confirmed minimal off-target effects and high specificity for CK2.
Conclusions:
- GO289 and CX4945 are highly selective inhibitors of CK2 activity in cellular models.
- GO289 demonstrates superior inhibitory efficacy compared to CX4945 in C2C12 myoblasts.
- These compounds represent valuable tools for studying the CK2-dependent phosphoproteome with negligible off-target effects.

