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Updated: Jun 8, 2025

Identifying PD-1/PD-L1 Inhibitors with Surface Plasmon Resonance Technology
Published on: May 2, 2025
Evaluation of STK17B as a cancer immunotherapy target utilizing highly potent and selective small molecule inhibitors
Felix Scheuplein1, Florian Renner2, John E Campbell1
1Blueprint Medicines Corporation, Cambridge, MA, United States.
Introduction:
The serine/threonine kinase 17B (STK17B) is involved in setting the threshold for T cell activation and its absence sensitizes T cells to suboptimal stimuli. Consequently, STK17B represents an attractive potential target for cancer immunotherapy.
Methods:
To assess the potential of STK17B as an immuno-oncology target, we developed potent and selective tool compounds from starting points in Blueprint Medicines Corporation's proprietary kinase inhibitor library. To characterize these molecules, enzyme and cellular assays for STK17A and STK17B were established to drive chemistry optimization. Mass spectrometry-based phosphoproteomics profiling with tool inhibitors led to the identification of Ser19 on myosin light chain 2 as STK17B substrate, which is then developed into a flow cytometry-based pharmacodynamic readout of STK17B inhibition both in vitro and in vivo.
Results:
In a mouse T cell activation assay, STK17B inhibitors demonstrated the ability to enhance interleukin-2 (IL-2) production. Similarly, treatment with STK17B inhibitors resulted in stronger cytokine secretion in human T cells activated using a T cell bispecific antibody. Subsequent chemistry optimization led to the identification of a highly selective and orally bioavailable tool compound, BLU7482. In vivo, STK17B inhibition led to dose-dependent modulation of myosin light chain 2 phosphorylation and enhanced priming of naïve T cells, as determined by upregulation of CD69, IL-2 and interferon-γ secretion. In line with increased T cell activation, treatment with STK17B inhibitor enhanced antitumor activity of anti-PD-L1 antibody in the MCA205 model.
Conclusions:
In summary, we successfully identified and optimized STK17B kinase inhibitors which led to increased T cell responses in vitro and in vivo. This allowed us to evaluate the potential of STK17B inhibition as an approach for cancer immunotherapy.
Insights
Researchers developed STK17B kinase inhibitors to enhance T cell activation for cancer immunotherapy. These inhibitors boosted T cell responses and improved anti-PD-L1 efficacy in preclinical models.
Area of Science:
- Immunology
- Oncology
- Biochemistry
Background:
- Serine/threonine kinase 17B (STK17B) regulates T cell activation thresholds.
- STK17B absence sensitizes T cells to weak stimuli, suggesting its potential as a cancer immunotherapy target.
Purpose of the Study:
- To develop potent and selective STK17B inhibitors for immuno-oncology.
- To evaluate STK17B inhibition as a strategy to enhance anti-tumor immunity.
Main Methods:
- Utilized a kinase inhibitor library to identify STK17B tool compounds.
- Established enzyme and cellular assays for STK17A and STK17B.
- Employed phosphoproteomics to identify STK17B substrates and developed a flow cytometry-based pharmacodynamic assay.
Main Results:
- STK17B inhibitors enhanced IL-2 production in mouse and human T cells.
- Identified BLU7482, a selective, orally bioavailable STK17B inhibitor.
- Demonstrated dose-dependent in vivo modulation of STK17B activity and enhanced T cell priming.
- STK17B inhibition augmented anti-PD-L1 antibody efficacy in a preclinical tumor model.
Conclusions:
- Successfully developed STK17B kinase inhibitors that increase T cell responses in vitro and in vivo.
- Validated STK17B inhibition as a promising approach for cancer immunotherapy.
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