CD89: the human myeloid IgA Fc receptor
1Laboratory for Immunohistochemistry and Immunopathology, Institute of Pathology, University of Oslo, The National Hospital, Rikshospitalet, Norway. craig.morton@labmed.uio.no
Insights
CD89, the human myeloid IgA Fc receptor, binds IgA and triggers immune responses. Its genetics, structure, and diverse biological functions, including protective and potentially harmful effects, are reviewed.
Area of Science:
- Immunology
- Molecular Biology
Background:
- CD89 (Fc alphaRI) is a human myeloid IgA Fc receptor found on neutrophils, eosinophils, and monocytes/macrophages.
- It binds all forms of IgA and mediates effector functions upon cross-linking by IgA-opsonized particles or antibodies.
Purpose of the Study:
- To review current knowledge on the genetics, structure, and biological function of CD89.
- To discuss the association of CD89 with the FcR gamma chain and its implications for intracellular signaling.
- To explore potential non-signaling forms of CD89 and their role in anti-inflammatory effects.
Main Methods:
- Literature review of existing studies on CD89.
- Analysis of genetic data regarding CD89 gene location.
- Examination of structural and functional data of CD89 and its interactions.
Main Results:
- CD89 gene is located in the leukocyte receptor cluster (LRC) on chromosome 19.
- CD89 associates with the FcR gamma chain on myeloid cells for intracellular signaling.
- A non-FcR gamma chain-associated form of CD89 may contribute to anti-inflammatory effects.
Conclusions:
- CD89 plays a crucial role in IgA-mediated immune responses.
- Understanding CD89's structure and signaling is key to modulating immune functions.
- Further research is needed to elucidate the biological relevance of non-signaling CD89 forms.
Abstract:
CD89 (Fc alphaRI) is the human myeloid IgA Fc receptor expressed on cells, such as neutrophils, eosinophils and monocytes/macrophages. Cross-linking of CD89 on these cells, by IgA-opsonised particles (e.g. bacteria, viruses) or anti-CD89 monoclonal antibodies, can trigger various immunological effector functions which are generally protective but may also cause harm to the body. CD89 is a transmembrane glycoprotein that binds both subclasses of IgA in all its molecular forms (i.e. monomeric, dimeric and secretory IgA) via a region of its membrane-distal EC1 domain. DNA studies have shown that the CD89 gene is located within the newly described leukocyte receptor cluster (LRC) on chromosome 19. CD89 is more closely related to the KIR and MIR proteins, whose genes are also found in the LRC, than to other human Fc receptors (FcRs). On myeloid cells, CD89 is able to associate with the immunoreceptor tyrosine-based activation motif (ITAM)-containing the FcR gamma chain, which is responsible for intracellular signaling via CD89. Recently, it has been suggested that some cells express CD89 in a form that does not associate with the FcR gamma chain. Although the biological relevance of this observation is not yet clear, it may explain certain anti-inflammatory/inhibitory effects attributed to IgA. Here we review current knowledge concerning the genetics, structure and biological function of CD89.
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