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Updated: Jan 26, 2026

Real-Time Monitoring of Aurora kinase A Activation using Conformational FRET Biosensors in Live Cells
Published on: July 30, 2020
Functional interplay between NF-κB-inducing kinase and c-Abl kinases limits response to Aurora inhibitors in multiple
Laura Mazzera1,2, Manuela Abeltino1, Guerino Lombardi2
1Department of Medicine and Surgery, University of Parma, Parma.
Abstract:
Considering that Aurora kinase inhibitors are currently under clinical investigation in hematologic cancers, the identification of molecular events that limit the response to such agents is essential for enhancing clinical outcomes. Here, we discover a NF-κB-inducing kinase (NIK)-c-Abl-STAT3 signaling-centered feedback loop that restrains the efficacy of Aurora inhibitors in multiple myeloma. Mechanistically, we demonstrate that Aurora inhibition promotes NIK protein stabilization via downregulation of its negative regulator TRAF2. Accumulated NIK converts c-Abl tyrosine kinase from a nuclear proapoptotic into a cytoplasmic antiapoptotic effector by inducing its phosphorylation at Thr735, Tyr245 and Tyr412 residues, and, by entering into a trimeric complex formation with c-Abl and STAT3, increases both the transcriptional activity of STAT3 and expression of the antiapoptotic STAT3 target genes PIM1 and PIM2. This consequently promotes cell survival and limits the response to Aurora inhibition. The functional disruption of any of the components of the trimer NIK-c-Abl-STAT3 or the PIM survival kinases consistently enhances the responsiveness of myeloma cells to Aurora inhibitors. Importantly, concurrent inhibition of NIK or c-Abl disrupts Aurora inhibitor-induced feedback activation of STAT3 and sensitizes myeloma cells to Aurora inhibitors, implicating a combined inhibition of Aurora and NIK or c-Abl kinases as potential therapies for multiple myeloma. Accordingly, pharmacological inhibition of c-Abl together with Aurora resulted in substantial cell death and tumor regression in vivo The findings reveal an important functional interaction between NIK, Abl and Aurora kinases, and identify the NIK, c-Abl and PIM survival kinases as potential pharmacological targets for improving the efficacy of Aurora inhibitors in myeloma.
Insights
A newly discovered feedback loop involving NF-κB-inducing kinase (NIK), c-Abl, and STAT3 limits Aurora inhibitor effectiveness in multiple myeloma. Targeting this loop enhances cancer cell death and tumor regression.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Signaling
Background:
- Aurora kinase inhibitors are under clinical investigation for hematologic cancers.
- Identifying mechanisms limiting Aurora inhibitor response is crucial for improving patient outcomes.
Purpose of the Study:
- To uncover molecular events that restrain the efficacy of Aurora inhibitors in multiple myeloma.
- To elucidate a novel signaling feedback loop involving NIK, c-Abl, and STAT3.
Main Methods:
- Investigated the role of NIK-c-Abl-STAT3 signaling in multiple myeloma response to Aurora inhibition.
- Analyzed protein stabilization, phosphorylation, and complex formation.
- Assessed the impact of disrupting NIK-c-Abl-STAT3 or PIM kinases on Aurora inhibitor efficacy.
- Evaluated combined pharmacological inhibition of Aurora and c-Abl kinases *in vivo*.
Main Results:
- Aurora inhibition stabilizes NIK by downregulating TRAF2, leading to c-Abl activation and STAT3 transcriptional activity.
- A NIK-c-Abl-STAT3 complex promotes survival by upregulating PIM1 and PIM2, limiting Aurora inhibitor efficacy.
- Disrupting NIK-c-Abl-STAT3 or PIM kinases enhances myeloma cell sensitivity to Aurora inhibitors.
- *In vivo* studies showed combined Aurora and c-Abl inhibition induced tumor regression.
Conclusions:
- A NIK-c-Abl-STAT3 feedback loop confers resistance to Aurora inhibitors in multiple myeloma.
- Concurrent inhibition of Aurora kinases with NIK or c-Abl represents a promising therapeutic strategy.
- NIK, c-Abl, and PIM kinases are potential targets to improve Aurora inhibitor efficacy in myeloma.
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