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Updated: Jun 2, 2026

Time-resolved Förster Resonance Energy Transfer Assays for Measurement of Endogenous Phosphorylated STAT Proteins in Human Cells
Published on: September 9, 2021
A CK2-dependent mechanism for activation of the JAK-STAT signaling pathway
Ying Zheng1, Hongwei Qin, Stuart J Frank
1Departments of Cell Biology, University of Alabama at Birmingham, Birmingham, AL, USA.
Abstract:
JAK-STAT signaling is involved in the regulation of cell survival, proliferation, and differentiation. JAK tyrosine kinases can be transiently activated by cytokines or growth factors in normal cells, whereas they become constitutively activated as a result of mutations that affect their function in tumors. Specifically, the JAK2V617F mutation is present in the majority of patients with myeloproliferative disorders (MPDs) and is implicated in the pathogenesis of these diseases. In the present study, we report that the kinase CK2 is a novel interaction partner of JAKs and is essential for JAK-STAT activation. We demonstrate that cytokine-induced activation of JAKs and STATs and the expression of suppressor of cytokine signaling 3 (SOCS-3), a downstream target, are inhibited by CK2 small interfering RNAs or pharmacologic inhibitors. Endogenous CK2 is associated with JAK2 and JAK1 and phosphorylates JAK2 in vitro. To extend these findings, we demonstrate that CK2 interacts with JAK2V617F and that CK2 inhibitors suppress JAK2V617F autophosphorylation and downstream signaling in HEL92.1.7 cells (HEL) and primary cells from polycythemia vera (PV) patients. Furthermore, CK2 inhibitors potently induce apoptosis of HEL cells and PV cells. Our data provide evidence for novel cross-talk between CK2 and JAK-STAT signaling, with implications for therapeutic intervention in JAK2V617F-positive MPDs.
Insights
Protein kinase CK2 is a novel JAK-STAT signaling partner essential for myeloproliferative disorder pathogenesis. CK2 inhibition suppresses JAK2V617F signaling and induces apoptosis in cancer cells.
Area of Science:
- Oncology
- Molecular Biology
- Signal Transduction
Background:
- JAK-STAT signaling regulates cell functions; mutations like JAK2V617F drive myeloproliferative disorders (MPDs).
- Constitutive JAK activation is a hallmark of certain cancers, necessitating targeted therapeutic strategies.
Purpose of the Study:
- To identify novel regulators of JAK-STAT signaling in MPDs.
- To investigate the role of protein kinase CK2 (CK2) in JAK-STAT pathway activation and its therapeutic potential in JAK2V617F-positive MPDs.
Main Methods:
- Investigated CK2 interaction with JAK kinases using biochemical assays.
- Utilized small interfering RNAs (siRNAs) and pharmacologic inhibitors against CK2.
- Assessed effects of CK2 inhibition on JAK-STAT signaling, JAK2V617F autophosphorylation, and apoptosis in cell lines and patient-derived cells.
Main Results:
- CK2 directly interacts with and phosphorylates JAK2 and JAK1.
- CK2 inhibition suppressed cytokine-induced JAK-STAT activation and SOCS-3 expression.
- CK2 inhibitors reduced JAK2V617F autophosphorylation and downstream signaling in HEL cells and primary polycythemia vera cells.
- CK2 inhibition induced apoptosis in JAK2V617F-positive cancer cells.
Conclusions:
- CK2 is a novel, essential component of JAK-STAT signaling pathways.
- CK2 inhibition represents a promising therapeutic strategy for JAK2V617F-positive MPDs.
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