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Updated: Jul 13, 2025

Analyzing Tumor and Tissue Distribution of Target Antigen Specific Therapeutic Antibody
Published on: May 16, 2020
Characterizing the regulatory Fas (CD95) epitope critical for agonist antibody targeting and CAR-T bystander function
Tanmoy Mondal1,2, Himanshu Gaur1,2, Brice E N Wamba1,2
1Laboratory of Novel Biologics, University of California Davis, Davis, CA, USA.
Abstract:
Receptor clustering is the most critical step to activate extrinsic apoptosis by death receptors belonging to the TNF superfamily. Although clinically unsuccessful, using agonist antibodies, the death receptors-5 remains extensively studied from a cancer therapeutics perspective. However, despite its regulatory role and elevated function in ovarian and other solid tumors, another tumor-enriched death receptor called Fas (CD95) remained undervalued in cancer immunotherapy until recently, when its role in off-target tumor killing by CAR-T therapies was imperative. By comprehensively analyzing structure studies in the context of the binding epitope of FasL and various preclinical Fas agonist antibodies, we characterize a highly significant patch of positively charged residue epitope (PPCR) in its cysteine-rich domain 2 of Fas. PPCR engagement is indispensable for superior Fas agonist signaling and CAR-T bystander function in ovarian tumor models. A single-point mutation in FasL or Fas that interferes with the PPCR engagement inhibited apoptotic signaling in tumor cells and T cells. Furthermore, considering that clinical and immunological features of the autoimmune lymphoproliferative syndrome (ALPS) are directly attributed to homozygous mutations in FasL, we reveal differential mechanistic details of FasL/Fas clustering at the PPCR interface compared to described ALPS mutations. As Fas-mediated bystander killing remains vital to the success of CAR-T therapies in tumors, our findings highlight the therapeutic analytical design for potentially effective Fas-targeting strategies using death agonism to improve cancer immunotherapy in ovarian and other solid tumors.
Insights
This study identifies a critical positively charged residue patch (PPCR) on Fas, essential for activating apoptosis and enhancing CAR-T cell therapy in ovarian cancer models. Targeting PPCR offers a new strategy for cancer immunotherapy.
Area of Science:
- Immunology
- Molecular Biology
- Oncology
Background:
- Receptor clustering is crucial for extrinsic apoptosis activation by TNF superfamily death receptors.
- Fas (CD95), a tumor-enriched death receptor, is vital for CAR-T cell off-target tumor killing.
- Previous cancer therapeutics focused on death receptor 5 with limited success.
Purpose of the Study:
- To characterize the Fas binding epitope for improved cancer immunotherapy strategies.
- To investigate the role of a specific positively charged residue epitope (PPCR) in Fas signaling and CAR-T cell function.
- To differentiate FasL/Fas clustering mechanisms at the PPCR from autoimmune lymphoproliferative syndrome (ALPS) mutations.
Main Methods:
- Structural analysis of FasL and Fas agonist antibodies.
- Site-directed mutagenesis to assess PPCR engagement.
- Preclinical ovarian tumor models to evaluate CAR-T bystander function.
- Comparison with known ALPS-associated FasL mutations.
Main Results:
- A significant positively charged residue epitope (PPCR) in Fas's cysteine-rich domain 2 is identified.
- PPCR engagement is critical for effective Fas agonist signaling and CAR-T bystander killing in ovarian cancer.
- Mutations disrupting PPCR engagement inhibit apoptotic signaling in tumor and T cells.
- Differential mechanisms of FasL/Fas clustering at PPCR compared to ALPS mutations were revealed.
Conclusions:
- The PPCR is a key target for developing effective Fas-targeting cancer immunotherapies.
- Understanding PPCR engagement provides insights into optimizing CAR-T cell therapies for solid tumors.
- This research highlights a novel therapeutic design strategy for cancer treatment using death agonism.
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