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Fc receptor biology
1Laboratoire d'Immunologie Cellulaire et Clinique, INSERM U.255, Institut Curie, Paris, France. Marc.Daeron@curie.fr
Insights
Membrane Fc receptors (FcR) aggregate to trigger cell responses. FcR with ITAMs activate signaling pathways, while those without ITAMs internalize ligands, demonstrating adaptable signaling based on cellular context.
Area of Science:
- Immunology
- Cell Biology
- Molecular Signaling
Background:
- Membrane Fc receptors (FcR) are crucial for cellular immune responses.
- FcR belong to the immunoglobulin superfamily and mediate diverse cellular functions.
- Understanding FcR signaling mechanisms is key to immune regulation.
Purpose of the Study:
- To review the mechanisms by which FcR trigger and regulate cellular responses.
- To elucidate the signaling pathways activated by FcR aggregation.
- To explore the role of different FcR motifs (ITAMs and ITIMs) in cellular activation and inhibition.
Main Methods:
- Literature review focusing on FcR function and signaling.
- Analysis of FcR aggregation-induced signaling cascades.
- Examination of FcR-mediated endocytosis, phagocytosis, and transcytosis.
Main Results:
- FcR aggregation triggers signals via ITAMs, activating Src and Syk kinases, leading to cell activation, endocytosis, and phagocytosis.
- FcR lacking ITAMs do not directly activate cells but internalize ligands, with their fate determined by receptor sequences.
- Co-aggregation of FcR with other receptors or FcR with ITIMs modulates signaling, enabling negative regulation of cell activation.
Conclusions:
- FcR function as adaptable subunits of multichain receptors, delivering context-dependent signals.
- FcR signaling is finely tuned by the presence of ITAMs, ITIMs, and co-aggregation events.
- FcR play a central role in orchestrating immune cell responses through complex signaling networks.
Abstract:
This review deals with membrane Fc receptors (FcR) of the immunoglobulin superfamily. It is focused on the mechanisms by which FcR trigger and regulate biological responses of cells on which they are expressed. FcR deliver signals when they are aggregated at the cell surface. The aggregation of FcR having immunoreceptor tyrosine-based activation motifs (ITAMs) activates sequentially src family tyrosine kinases and syk family tyrosine kinases that connect transduced signals to common activation pathways shared with other receptors. FcR with ITAMs elicit cell activation, endocytosis, and phagocytosis. The nature of responses depends primarily on the cell type. The aggregation of FcR without ITAM does not trigger cell activation. Most of these FcR internalize their ligands, which can be endocytosed, phagocytosed, or transcytosed. The fate of internalized receptor-ligand complexes depends on defined sequences in the intracytoplasmic domain of the receptors. The coaggregation of different FcR results in positive or negative cooperation. Some FcR without ITAM use FcR with ITAM as signal transduction subunits. The coaggregation of antigen receptors or of FcR having ITAMs with FcR having immunoreceptor tyrosine-based inhibition motifs (ITIMs) negatively regulates cell activation. FcR therefore appear as the subunits of multichain receptors whose constitution is not predetermined and which deliver adaptative messages as a function of the environment.
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