Related Experiment Video
Updated: Feb 4, 2026

Identification of Novel CK2 Kinase Substrates Using a Versatile Biochemical Approach
Published on: February 21, 2019
CIGB-300: A peptide-based drug that impairs the Protein Kinase CK2-mediated phosphorylation
Silvio E Perea1, Idania Baladrón2, Carmen Valenzuela2
1Molecular Oncology Laboratory, Biomedical Research Area, Center for Genetic Engineering and Biotechnology, Havana, Cuba.
Abstract:
Protein kinase CK2, formerly referred to as casein kinase II, is a serine/threonine kinase often found overexpressed in solid tumors and hematologic malignancies that phosphorylates many substrates integral to the hallmarks of cancer. CK2 has emerged as a viable oncology target having been experimentally validated with different kinase inhibitors, including small molecule ATP-competitors, synthetic peptides, and antisense oligonucleotides. To date only two CK2 inhibitors, CIGB-300 and CX-4945, have entered the clinic in phase 1-2 trials. This review provides information on CIGB-300, a cell-permeable cyclic peptide that inhibits CK2-mediated phosphorylation by targeting the substrate phosphoacceptor domain. We review data that support the concept of CK2 as an anticancer target, address the mechanism of action, and summarize preclinical studies showing antiangiogenic and antimetastatic effects as well as synergism with anticancer drugs in preclinical models. We also summarize early clinical research (phase 1/2 trials) of CIGB-300 in cervical cancer, including data in combination with chemoradiotherapy. The clinical data demonstrate the safety, tolerability, and clinical effects of intratumoral injections of CIGB-300 and provide the foundation for future phase 3 clinical trials in locally advanced cervical cancer in combination with standard chemoradiotherapy.
Insights
Protein kinase CK2 (casein kinase II) is a cancer target. The peptide inhibitor CIGB-300 shows safety and efficacy in cervical cancer trials, supporting further research.
Area of Science:
- Oncology
- Biochemistry
- Pharmacology
Background:
- Protein kinase CK2 (casein kinase II) is overexpressed in various cancers.
- CK2 is a validated oncology target, with inhibitors showing preclinical anti-cancer effects.
- CIGB-300 is a novel CK2 inhibitor targeting the substrate phosphoacceptor domain.
Purpose of the Study:
- To review the role of CK2 in cancer.
- To discuss the mechanism of action of CIGB-300.
- To summarize preclinical and early clinical data for CIGB-300 in cancer treatment.
Main Methods:
- Review of preclinical studies on CK2 inhibitors.
- Analysis of early-phase clinical trials for CIGB-300.
- Evaluation of CIGB-300's safety, tolerability, and clinical effects.
Main Results:
- CIGB-300 demonstrates antiangiogenic and antimetastatic effects in preclinical models.
- CIGB-300 shows synergistic effects with other anticancer drugs.
- Phase 1/2 trials indicate CIGB-300 is safe and tolerable in cervical cancer patients.
Conclusions:
- CK2 is a promising anticancer target.
- CIGB-300 exhibits potential as an anticancer agent with demonstrated safety and clinical effects.
- Further phase 3 trials are warranted for CIGB-300 in cervical cancer.
Related Concept Videos
Protein Kinases and Phosphatases
Protein kinases
Many proteins in the cell are regulated by phosphorylation, the addition of a phosphate group. A family of enzymes called kinases...
Protein Kinases and Phosphatases
Phosphorylation
During phosphorylation, protein kinases transfer the terminal phosphate group of ATP to specific amino acid side chains of substrate proteins. Serine, threonine, and tyrosine are the most commonly...
Regulated Protein Degradation
Protein degradation plays two important roles in the cells. It helps to protect cells from misfolded or damaged proteins before they lead to a...
Antiepileptic Drugs: Modulators of Neurotransmitter Release Mediated by SV2A Protein
SV2A is a transmembrane glycoprotein located predominantly in the brain, modulating the release of neurotransmitters for neuronal communication. Both levetiracetam and brivaracetam exhibit a high affinity for...
cAMP-dependent Protein Kinase Pathways

