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Identification of Novel CK2 Kinase Substrates Using a Versatile Biochemical Approach
Published on: February 21, 2019
A FRET-based microplate assay for human protein kinase CK2, a target in neoplastic disease
Andreas Gratz1, Claudia Götz, Joachim Jose
1Bioanalytics, Institute of Pharmaceutical and Medicinal Chemistry, Heinrich-Heine-University Düsseldorf, Düsseldorf, Germany.
Abstract:
Besides cardiovascular diseases, cancer represents the major cause of death in developed countries. In many different human tumors, increased activity of serine/threonine protein kinase CK2 has been detected, and recent in vivo studies support a direct involvement of CK2 in tumor progression. Therefore, potent compounds to decrease CK2 activity to a non-pathogenic level would be a promising effort toward an antineoplastic therapy. In this study, an alternative to the established radiometric phosphorylation assay for quantification of CK2 activity was developed. For this purpose, the substrate peptide RRRDDDSDDD was coupled at the C-terminus to the fluorophore EDANS (5-[(2-aminoethyl)amino]naphthalene-1-sulfonic acid) and at the N-terminus to the quencher DABCYL (4-(4-dimethylaminophenylazo)benzoic acid). This resulted in quenched fluorescence of EDANS due to a FRET-based effect. After proteolytic cleavage of the peptide by elastase, the quenching effect was reduced and, as a consequence, fluorescence was increased. Because elastase is supposed to cleave at the S/D site of the peptide, phosphorylation of serine by CK2 hampered substrate binding of elastase and blocked the increase in fluorescence by proteolytic cleavage. This means that the new assay to quantify human CK2 activity is based on the differential accessibility of the proteolytic cleavage site, which is dependent on kinase phosphorylation. It could be used to measure inhibition of the human target in neoplastic diseases by the compounds TBB (4,5,6,7-tetrabromobenzotriazole) and Emodin.
Insights
A new assay quantifies human protein kinase CK2 activity by measuring fluorescence changes after peptide cleavage. This method can assess inhibitors like TBB and Emodin for cancer therapy.
Area of Science:
- Biochemistry
- Molecular Biology
- Oncology
Background:
- Cancer is a leading cause of death, with elevated protein kinase CK2 activity implicated in tumor progression.
- Targeting CK2 offers a potential antineoplastic therapy strategy.
Purpose of the Study:
- To develop a novel assay for quantifying human CK2 activity.
- To evaluate the efficacy of CK2 inhibitors using the new assay.
Main Methods:
- A FRET-based assay using a dual-labeled peptide (EDANS/DABCYL) was developed.
- Assay measures fluorescence changes resulting from elastase cleavage, modulated by CK2 phosphorylation.
- The assay quantifies CK2 activity and inhibition by compounds TBB and Emodin.
Main Results:
- The novel assay successfully quantified human CK2 activity.
- Phosphorylation by CK2 inhibited elastase cleavage, altering fluorescence.
- The assay demonstrated utility in measuring inhibition by TBB and Emodin.
Conclusions:
- A new, sensitive assay for CK2 activity has been established.
- This assay provides a tool for evaluating potential anti-cancer drugs targeting CK2.
- The findings support CK2 as a target for neoplastic disease treatment.

