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Measuring Composition of CD95 Death-Inducing Signaling Complex and Processing of Procaspase-8 in this Complex
Published on: August 2, 2021
Insights into the molecular regulation of FasL (CD178) biology
Marcus Lettau1, Maren Paulsen, Hendrik Schmidt
1Christian-Albrechts-University, Institute of Immunology, D-24105 Kiel, Germany. lettau@immunologie.uni-kiel.de
Abstract:
Fas ligand (FasL, CD95L, APO-1L, CD178, TNFSF6, APT1LG1) is the key death factor of receptor-triggered programmed cell death in immune cells. FasL/Fas-dependent apoptosis plays a pivotal role in activation-induced cell death, termination of immune responses, elimination of autoreactive cells, cytotoxic effector function of T and NK cells, and the establishment of immune privilege. Deregulation or functional impairment of FasL threatens the maintenance of immune homeostasis and defense and results in severe autoimmunity. In addition, FasL has been implicated as an accessory or costimulatory receptor in T cell activation. The molecular mechanisms underlying this reverse signaling capacity are, however, poorly understood and still controversially discussed. Many aspects of FasL biology have been ascribed to selective protein-protein interactions mediated by a unique polyproline region located in the membrane-proximal intracellular part of FasL. Over the past decade, we and others identified a large number of putative FasL-interacting molecules that bind to this polyproline stretch via Src homology 3 or WW domains. Individual interactions were analyzed in more detail and turned out to be crucial for the lysosomal storage, the transport and the surface appearance of the death factor and potentially also for reverse signaling. This review summarizes the work in the framework of the Collaborative Research Consortium 415 (CRC 415) and provides facts and hypotheses about FasL-interacting proteins and their potential role in FasL biology.
Insights
Fas ligand (FasL) is crucial for immune cell death and homeostasis. Interactions with FasL-binding proteins influence its function, transport, and potential reverse signaling, impacting immune regulation.
Area of Science:
- Immunology
- Molecular Biology
- Cell Biology
Background:
- Fas ligand (FasL) mediates receptor-triggered programmed cell death in immune cells.
- FasL/Fas-dependent apoptosis is vital for immune homeostasis, T cell regulation, and immune privilege.
- FasL deregulation can lead to autoimmunity and impaired immune defense.
Purpose of the Study:
- To review the role of FasL-interacting proteins in FasL biology.
- To explore the mechanisms of FasL reverse signaling.
- To summarize findings from the Collaborative Research Consortium 415 (CRC 415).
Main Methods:
- Identification of FasL-interacting molecules.
- Analysis of protein-protein interactions via polyproline region, Src homology 3 (SH3), and WW domains.
- Detailed investigation of individual FasL-protein interactions.
Main Results:
- Numerous FasL-interacting proteins bind to the FasL polyproline region.
- These interactions are critical for FasL lysosomal storage, transport, and surface expression.
- Potential roles in FasL reverse signaling are suggested.
Conclusions:
- FasL-interacting proteins significantly influence FasL trafficking and function.
- Understanding these interactions is key to elucidating FasL's role in immune regulation and reverse signaling.
- Further research is needed to fully understand the implications of these interactions for immune homeostasis and disease.
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