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Enhanced Antitumor Immunity by ASP1570, a Novel Diacylglycerol Kinase ζ Inhibitor, Offers a Potential Novel
Osamu Ikeda1, Aya Kikuchi1, Hirofumi Tsuzuki2
1Astellas Pharma (Japan), Tsukuba, Ibaraki, Japan.
Abstract:
Studies of diacylglycerol kinase ζ (DGKζ) in DGKζ knockout mice have revealed its role as an intracellular immune checkpoint in T cells. Although enhancing antitumor immunity by pharmacologic inhibition of DGKζ is desirable, selective DGKζ inhibitors for clinical use remain largely unexplored. In this study, we report a novel, small-molecule DGKζ inhibitor, ASP1570, which is currently under phase 1 development (NCT05083481), and characterize its effect on potential resistance mechanisms against approved immune checkpoint inhibitors in multiple immunosuppressive conditions: not only TGF-β, prostaglandin E2, adenosine, and PD-1 but also cytotoxic T-lymphocyte antigen-4 and T-cell immunoreceptor with Ig and immunoreceptor tyrosine-based inhibitory motif. First, our findings indicated that ASP1570 exhibited an inhibitory effect on the kinase activity of DGKζ. Unexpectedly, we observed that DGKζ protein was degraded in cells treated with ASP1570 in a proteasome-dependent manner. ASP1570 enhanced T-cell activation with increased diacylglycerol downstream signaling and released anergic T cells from their hyporesponsive state. Furthermore, ASP1570 restored T-cell functions suppressed by multiple immunosuppressive signals (TGF-β, prostaglandin E2, adenosine, PD-1, cytotoxic T-lymphocyte antigen-4, and T-cell immunoreceptor with Ig and immunoreceptor tyrosine-based inhibitory motif) and induced tumor growth inhibition in two types of syngeneic mouse models: anti-PD-1 antibody-sensitive MC38 and anti-PD-1 antibody-insensitive B16F1/F10. The antitumor efficacy of ASP1570 was canceled by CD8+ T-cell depletion, indicating that its antitumor effect depends on CD8+ cytotoxic T-cell activation. Collectively, ASP1570 potentially improves antitumor efficacy in both anti-PD-1 therapy-resistant and anti-PD-1 therapy-responsive tumors by overcoming multiple immunosuppressive signals.
Insights
A novel drug, ASP1570, inhibits diacylglycerol kinase ζ (DGKζ), an immune checkpoint in T cells. This drug enhances antitumor immunity by restoring T-cell function against various immunosuppressive signals.
Area of Science:
- Immunology
- Pharmacology
- Oncology
Background:
- Diacylglycerol kinase ζ (DGKζ) acts as an intracellular immune checkpoint in T cells.
- Pharmacologic inhibition of DGKζ is a potential strategy to enhance antitumor immunity.
- Selective DGKζ inhibitors for clinical use are largely unexplored.
Purpose of the Study:
- To report a novel small-molecule DGKζ inhibitor, ASP1570.
- To characterize ASP1570's effects on resistance mechanisms against immune checkpoint inhibitors.
- To evaluate ASP1570's potential in overcoming immunosuppressive conditions and enhancing antitumor immunity.
Main Methods:
- ASP1570 was evaluated for its inhibitory effect on DGKζ kinase activity.
- DGKζ protein degradation in response to ASP1570 was assessed.
- T-cell activation, downstream signaling, and responses to immunosuppressive signals were analyzed.
- Tumor growth inhibition was evaluated in syngeneic mouse models.
- The role of CD8+ T cells in ASP1570's antitumor efficacy was investigated.
Main Results:
- ASP1570 inhibited DGKζ kinase activity and induced proteasome-dependent DGKζ protein degradation.
- ASP1570 enhanced T-cell activation, increased diacylglycerol signaling, and released anergic T cells.
- ASP1570 restored T-cell functions suppressed by TGF-β, prostaglandin E2, adenosine, PD-1, CTLA-4, and TIGIT.
- ASP1570 inhibited tumor growth in both anti-PD-1-sensitive and anti-PD-1-insensitive mouse models.
- The antitumor effect of ASP1570 was dependent on CD8+ T-cell activation.
Conclusions:
- ASP1570 is a novel small-molecule DGKζ inhibitor with potential clinical applications.
- ASP1570 overcomes multiple immunosuppressive signals, enhancing T-cell function and antitumor immunity.
- ASP1570 demonstrates potential efficacy in both anti-PD-1 therapy-responsive and resistant tumors.
- ASP1570's mechanism involves CD8+ cytotoxic T-cell activation.
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