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Light-mediated Reversible Modulation of the Mitogen-activated Protein Kinase Pathway during Cell Differentiation and Xenopus Embryonic Development
Published on: June 15, 2017
Cbl-b inhibitor NX-1607 activates MAPK/ERK signaling pathway and enhances T-cell activation
Wenting Zhu1,2, Shan Lu1,2, Li Jia1,2
1State Key Laboratory of Drug Research, Cancer Research Center, Shanghai Institute of Materia Medica, Chinese Academy of Sciences, Shanghai, China.
Abstract:
Backgroud: The E3 ubiquitin ligase casitas B lymphoma-b (Cbl-b) is pivotal in modulating immune responses by attenuating T-cell activation and cytokine production. Inhibiting Cbl-b presents a potential therapeutic strategy in immuno-oncology by enhancing immune activity. Methods: A rapid Homogeneous Time-Resolved Fluorescence (HTRF) assay was employed to evaluate the inhibitory efficacy of NX-1607 on Cbl-b. The effects of NX-1607 on T cell activation, cytokine production, and proliferation were characterized invitro using primary T cells and Jurkat T cells. A drug combination screening was performed utilizing the CD69 marker via flow cytometry to dentify signaling pathways involved in T cell activation by NX-1607. CRISPR/Cas9 technology was used to knock out PLCG1 and MAPK3/1 in Jurkat T cells, followed by the detection of p-PLCγ1 and p-ERK1/2 though Western blotting. The antitumor efficacy of NX-1607 was assessed in a murine model of A20 B-cell lymphoma using BALB/c mice, with subsequent flow cytometry analysis conducted to examine the phenotype of tumor-infiltrating lymphocytes (TILs). Results: Our data show that NX-1607 effectively inhibits Cbl-b activity at low nanomolar levels, boosting PLCγ1 and HCSL1 phosphorylation, activating MAPK/ERK signaling, and elevating CD69 expression. Inhibiting PLCγ1 and ERK1/2 significantly reduces NX-1607's effect on T-cell activation. Oral administration of NX-1607 notably decreases tumor growth in the A20 B-cell lymphoma model, with immunophenotyping analyses of tumor-infiltrating lymphocytes revealing increased CD3+, CD4+, and CD8+ T cells in treated tumors. Furthermore, our results demonstrate that treatment with NX-1607 results in increased levels of phosphorylated PLCγ1 and ERK1/2 in circulating T cells. Conclusion: Taken together, these findings imply that the inhibition of Cbl-b by NX-1607 may enhance the activation of the MAPK/ERK signaling pathway, thereby sustaining T-cell activation. This provides compelling evidence for the molecular mechanism of NX-1607, underscoring the pivotal role of Cbl-b in controlling signal strength in T-cell activation after T-cell receptor (TCR) engagement.
Insights
NX-1607 inhibits casitas B lymphoma-b (Cbl-b), enhancing T-cell activation and anti-tumor immunity. This drug boosts T-cell signaling pathways, offering a potential immuno-oncology therapy.
Area of Science:
- Immunology
- Pharmacology
- Cancer Biology
Background:
- Casitas B lymphoma-b (Cbl-b) negatively regulates T-cell activation and cytokine production.
- Inhibiting Cbl-b is a therapeutic strategy to enhance anti-tumor immune responses in immuno-oncology.
Purpose of the Study:
- To evaluate the efficacy of NX-1607 as a Cbl-b inhibitor.
- To elucidate the molecular mechanisms underlying NX-1607's effects on T-cell activation and anti-tumor activity.
Main Methods:
- Homogeneous Time-Resolved Fluorescence (HTRF) assay to assess Cbl-b inhibition by NX-1607.
- In vitro studies using primary and Jurkat T cells to analyze T-cell activation, cytokine production, and proliferation.
- CRISPR/Cas9 gene editing to investigate the roles of PLCG1 and MAPK3/1.
- In vivo assessment of NX-1607's anti-tumor efficacy in a murine B-cell lymphoma model.
- Flow cytometry and Western blotting for analyzing signaling pathways and immune cell phenotypes.
Main Results:
- NX-1607 inhibits Cbl-b activity at nanomolar concentrations, enhancing PLCγ1 and HCSL1 phosphorylation and activating MAPK/ERK signaling.
- NX-1607 treatment increased CD69 expression and T-cell activation markers in vitro and in vivo.
- NX-1607 demonstrated significant anti-tumor efficacy in a murine A20 B-cell lymphoma model.
- Increased CD3+, CD4+, and CD8+ T cells were observed in tumors treated with NX-1607, along with elevated phosphorylated PLCγ1 and ERK1/2 in circulating T cells.
Conclusions:
- NX-1607 inhibits Cbl-b, leading to enhanced MAPK/ERK pathway activation and sustained T-cell activation.
- These findings provide mechanistic insight into NX-1607's potential as an immuno-oncology therapeutic.
- Cbl-b plays a critical role in regulating T-cell receptor (TCR) signaling strength, and its inhibition can augment anti-tumor immunity.
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