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Updated: Jun 2, 2026

Measuring Composition of CD95 Death-Inducing Signaling Complex and Processing of Procaspase-8 in this Complex
Published on: August 2, 2021
Pro- and anti-apoptotic CD95 signaling in T cells
Maren Paulsen1, Ottmar Janssen
1Christian-Albrechts-University of Kiel Institute of Immunology, University Hospital Schleswig-Holstein Campus Kiel, Arnold-Heller-Str, 3 Bldg 17, D-24105 Kiel, Germany. m.paulsen@ikmb.uni-kiel.de.
Abstract:
The TNF receptor superfamily member CD95 (Fas, APO-1, TNFRSF6) is known as the prototypic death receptor in and outside the immune system. In fact, many mechanisms involved in apoptotic signaling cascades were solved by addressing consequences and pathways initiated by CD95 ligation in activated T cells or other "CD95-sensitive" cell populations. As an example, the binding of the inducible CD95 ligand (CD95L) to CD95 on activated T lymphocytes results in apoptotic cell death. This activation-induced cell death was implicated in the control of immune cell homeostasis and immune response termination. Over the past years, however, it became evident that CD95 acts as a dual function receptor that also exerts anti-apoptotic effects depending on the cellular context. Early observations of a potential non-apoptotic role of CD95 in the growth control of resting T cells were recently reconsidered and revealed quite unexpected findings regarding the costimulatory capacity of CD95 for primary T cell activation. It turned out that CD95 engagement modulates TCR/CD3-driven signal initiation in a dose-dependent manner. High doses of immobilized CD95 agonists or cellular CD95L almost completely silence T cells by blocking early TCR-induced signaling events. In contrast, under otherwise unchanged conditions, lower amounts of the same agonists dramatically augment TCR/CD3-driven activation and proliferation. In the present overview, we summarize these recent findings with a focus on the costimulatory capacity of CD95 in primary T cells and discuss potential implications for the T cell compartment and the interplay between T cells and CD95L-expressing cells including antigen-presenting cells.
Insights
CD95 (Fas) receptor acts as a dual-function molecule in T cells. Depending on CD95 ligand (CD95L) dose, it can induce apoptosis or costimulate T cell activation and proliferation.
Area of Science:
- Immunology
- Molecular Biology
- Cell Signaling
Background:
- CD95 (Fas/APO-1/TNFRSF6) is a well-established death receptor involved in apoptosis.
- Apoptotic signaling pathways were often elucidated using CD95 ligation in T cells.
- CD95 plays a role in immune homeostasis and terminating immune responses via activation-induced cell death.
Purpose of the Study:
- To review recent findings on the dual function of CD95.
- To highlight the costimulatory capacity of CD95 in primary T cell activation.
- To discuss the implications of CD95's dual role in T cell biology and interactions.
Main Methods:
- Review of existing literature on CD95 signaling.
- Analysis of studies investigating CD95 engagement with T cell receptor (TCR)/CD3 signaling.
- Examination of dose-dependent effects of CD95 agonists.
Main Results:
- CD95 exhibits context-dependent dual functions, including anti-apoptotic effects.
- CD95 engagement modulates TCR/CD3 signaling in a dose-dependent manner.
- High CD95 agonist doses inhibit T cell signaling, while low doses enhance T cell activation and proliferation.
Conclusions:
- CD95 acts as a costimulatory molecule for primary T cells, augmenting TCR/CD3-driven activation.
- The dual role of CD95 (apoptotic vs. costimulatory) depends on the cellular context and agonist concentration.
- Understanding CD95's costimulatory function is crucial for comprehending T cell responses and interactions with CD95L-expressing cells.
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