Related Experiment Video
Updated: Jul 14, 2025

Flow Cytometry-based Assay for the Monitoring of NK Cell Functions
Published on: October 30, 2016
Bifunctional Inhibitor Reveals NEK2 as a Therapeutic Target and Regulator of Oncogenic Pathways in Lymphoma
Mason McCrury1, Kennith Swafford1, Sydnye L Shuttleworth1
1Department of Biochemistry and Molecular Biology, University of Arkansas for Medical Sciences, Little Rock, Arkansas.
Abstract:
Expression of the serine/threonine kinase never in mitosis gene A (NIMA)-related kinase 2 (NEK2) is essential for entry into mitosis via its role in facilitating centrosome separation. Its overactivity can lead to tumorigenesis and drug resistance through the activation of several oncogenic pathways, including AKT. Although the cancer-enabling activities of NEK2 are documented in many malignancies, including correlations with poor survival in myeloma, breast, and non-small cell lung cancer, little is known about the role of NEK2 in lymphoma. Here, in tumors from patients with diffuse large B-cell lymphoma (DLBCL), the most common, aggressive non-Hodgkin lymphoma, we found a high abundance of NEK2 mRNA and protein associated with an inferior overall survival. Using our recently developed NEK2 inhibitor, NBI-961, we discovered that DLBCL cell lines and patient-derived cells exhibit a dependency on NEK2 for their viability. This compromised cell fitness was directly attributable to efficient NEK2 inhibition and proteasomal degradation by NBI-961. In a subset of particularly sensitive DLBCL cells, NBI-961 induced G2/mitosis arrest and apoptosis. In contrast, an existing indirect NEK2 inhibitor, INH154, did not prevent NEK2 autophosphorylation, induce NEK2 proteasomal degradation, or affect cell viability. Global proteomics and phospho-proteomics revealed that NEK2 orchestrates cell-cycle and apoptotic pathways through regulation of both known and new signaling molecules. We show the loss of NEK2-sensitized DLBCL to the chemotherapy agents, doxorubicin and vincristine, and effectively suppressed tumor growth in mice. These studies establish the oncogenic activity of NEK2 in DLBCL and set the foundation for development of anti-NEK2 therapeutic strategies in this frequently refractory and relapse-prone cancer.
Insights
The serine/threonine kinase NEK2 (never in mitosis gene A-related kinase 2) drives diffuse large B-cell lymphoma (DLBCL) growth. Inhibiting NEK2 with NBI-961 shows therapeutic potential for this aggressive lymphoma.
Area of Science:
- Oncology
- Molecular Biology
- Cell Biology
Background:
- The serine/threonine kinase NEK2 (never in mitosis gene A-related kinase 2) is crucial for mitosis and linked to tumorigenesis in various cancers.
- NEK2's role in lymphoma, particularly diffuse large B-cell lymphoma (DLBCL), remains largely unexplored despite its aggressive nature.
Purpose of the Study:
- To investigate the role of NEK2 in DLBCL pathogenesis.
- To evaluate the therapeutic efficacy of a novel NEK2 inhibitor, NBI-961, in DLBCL models.
Main Methods:
- Analysis of NEK2 expression in patient-derived DLBCL tumors.
- Assessment of DLBCL cell line and patient-derived cell sensitivity to NBI-961.
- Global proteomics and phospho-proteomics to identify NEK2-regulated pathways.
- Evaluation of NBI-961 in combination with chemotherapy agents and in vivo tumor models.
Main Results:
- High NEK2 expression in DLBCL tumors correlates with inferior overall survival.
- NBI-961 effectively inhibits NEK2, leading to proteasomal degradation and reduced DLBCL cell viability.
- NBI-961 treatment induces G2/M arrest and apoptosis in sensitive DLBCL cells.
- NEK2 inhibition sensitizes DLBCL to chemotherapy and suppresses tumor growth in vivo.
- An existing indirect NEK2 inhibitor, INH154, showed no significant effect.
Conclusions:
- NEK2 is an oncogenic driver in DLBCL, essential for cell viability and proliferation.
- NBI-961 demonstrates potent anti-lymphoma activity by targeting NEK2.
- Targeting NEK2 represents a promising therapeutic strategy for DLBCL, potentially overcoming treatment resistance.
More Related Videos
Related Concept Videos
Mitogens and the Cell Cycle
Targeted Cancer Therapies
There are several types of targeted therapies against...
Abnormal Proliferation
Receptor Downregulation in MVBs
The EGFR can initiate signaling pathways that lead to cell proliferation, migration, and differentiation. Overexpression of EGFR stimulates cells to proliferate. Excessive EGFR...
Inhibition of Cdk Activity
mTOR Signaling and Cancer Progression
The mTOR pathway or the...

