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Published on: October 30, 2013
FGFR3 Destabilizes PD-L1 via NEDD4 to Control T-cell-Mediated Bladder Cancer Immune Surveillance
Weiqiang Jing1, Ganyu Wang2, Zhiwei Cui3
1Department of Urology, Qilu Hospital, Cheeloo College of Medicine, Shandong University, Shandong Province, China.
Abstract:
Fibroblast growth factor receptor 3 (FGFR3) is frequently activated by mutation or overexpression, and it is a validated therapeutic target in urothelial carcinoma (UC) of the bladder. However, the role and detailed molecular mechanism of FGFR3 in the immune microenvironment of bladder cancer remain largely unknown. Here, we demonstrate that inhibition of FGFR3 in FGFR3-activated bladder cancer elevates PD-L1 protein levels by affecting its ubiquitination, thereby inhibiting the antitumor activity of CD8+ T cells. Tissue microarray analysis in human UC showed an inverse correlation between FGFR3 and PD-L1. Furthermore, NEDD4, an E3 ubiquitin ligase of the NEDD4 family of proteins, was phosphorylated by FGFR3 activation and served as a regulator of PD-L1 ubiquitination. Mechanistically, NEDD4 interacted with PD-L1 and catalyzed Lys48 (K48)-linked polyubiquitination of PD-L1. In mice bearing NEDD4 knockout bladder cancer, CD8+ T-cell infiltration and antitumor activity were significantly inhibited due to PD-L1 upregulation in bladder cancer cells. Furthermore, multiple FGFR3-activated tumor-bearing mouse models suggested that attenuated CD8+ T-cell-mediated antitumor efficacy following FGFR3-targeted therapy could be rescued by a combination with anti-PD-1 immunotherapy, which leads to effective tumor suppression. This study establishes a key molecular link between targeted therapy and immune surveillance and identifies NEDD4 as a crucial E3 ubiquitin ligase that targets PD-L1 for degradation in FGFR3-activated bladder cancer. These findings may potentially be exploited for combination therapies in UC of the bladder and possibly other malignancies with activated FGFR3. SIGNIFICANCE: NEDD4 links two important molecules associated with targeted therapy and immune surveillance, providing mechanistic rationale and preclinical support for immuno-targeted combination therapy for FGFR3-activated bladder cancer.
Insights
Targeting Fibroblast Growth Factor Receptor 3 (FGFR3) in bladder cancer increases PD-L1, hindering CD8+ T cells. NEDD4 E3 ligase regulates PD-L1, offering a target for combination immunotherapy.
Area of Science:
- Oncology
- Immunology
- Molecular Biology
Background:
- Fibroblast growth factor receptor 3 (FGFR3) is a key target in urothelial carcinoma (UC).
- The impact of FGFR3 on the bladder cancer immune microenvironment is not well understood.
- Understanding FGFR3's role is crucial for developing effective cancer therapies.
Purpose of the Study:
- To investigate the molecular mechanisms by which FGFR3 affects the immune microenvironment in bladder cancer.
- To explore the relationship between FGFR3, PD-L1, and CD8+ T cell activity.
- To identify potential therapeutic strategies combining FGFR3 inhibition with immunotherapy.
Main Methods:
- Analysis of tissue microarrays from human UC samples.
- In vitro studies involving FGFR3-activated bladder cancer cells.
- In vivo experiments using mouse models with bladder cancer, including NEDD4 knockout models.
- Assessment of PD-L1 protein levels, ubiquitination, and CD8+ T cell infiltration and function.
Main Results:
- FGFR3 inhibition in bladder cancer elevates PD-L1 levels by reducing its ubiquitination, impairing CD8+ T cell antitumor activity.
- A significant inverse correlation was observed between FGFR3 expression and PD-L1 levels in human UC.
- NEDD4, an E3 ubiquitin ligase, is phosphorylated by FGFR3 and targets PD-L1 for degradation.
- Combination therapy with FGFR3 inhibitors and anti-PD-1 immunotherapy demonstrated effective tumor suppression in preclinical models.
Conclusions:
- FGFR3 activation influences the tumor immune microenvironment by upregulating PD-L1 via NEDD4-mediated regulation of PD-L1 ubiquitination.
- NEDD4 acts as a critical link between FGFR3 targeted therapy and immune surveillance in bladder cancer.
- Combining FGFR3-targeted therapy with anti-PD-1 immunotherapy presents a promising strategy for treating FGFR3-activated bladder cancer and potentially other related malignancies.
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