Target intelligence / Profile preview

Immunoglobulin alpha Fc receptor I (CD89) (CD89)

Target
CD89
Molecular classification
Receptor, Immunoglobulin superfamily, Fc receptor
01

Overview

The Immunoglobulin alpha Fc receptor I (CD89) is a transmembrane glycoprotein expressed primarily on myeloid cells, including neutrophils, monocytes, and macrophages (UniProt P24071). It serves as the primary receptor for the Fc region of Immunoglobulin A (IgA), the most abundant antibody class at mucosal surfaces (Heineke & van Egmond, 2017). Upon binding to IgA-antigen complexes, CD89 associates with the Fc receptor gamma chain to trigger potent effector functions such as phagocytosis, respiratory burst, and antibody-dependent cellular cytotoxicity (ADCC) (Brandsma et al., 2019). In the context of disease, CD89 plays a dual role: it is implicated in the pathogenesis of IgA nephropathy through the formation of nephritogenic IgA-sCD89 complexes, yet it also represents a promising target for cancer immunotherapy by recruiting myeloid cells to kill tumor cells (Aleyd et al., 2015; Boross et al., 2013). Therapeutic strategies currently under investigation include monoclonal antibodies to block its pro-inflammatory activity in autoimmune conditions or bispecific antibodies to redirect its cytotoxic potential against malignancies (Oortwijn et al., 2007). A significant challenge in developing CD89-targeted therapies is the lack of a natural CD89 ortholog in mice, necessitating the use of transgenic animal models for preclinical validation (Heineke & van Egmond, 2017).

Other names
FCARFc alpha receptor IIgA Fc receptorCD89 antigenFcalphaRI
02

Mechanism of action

CD89 mediates its effects by binding the Fc portion of IgA1 and IgA2. It signals through the associated FcR gamma-chain (FcRγ) containing immunoreceptor tyrosine-based activation motifs (ITAMs), leading to the activation of Src and Syk family kinases (UniProt P24071). This signaling cascade induces pro-inflammatory responses; however, monomeric IgA binding can also induce inhibitory signaling (ITAMi), providing a mechanism for immune homeostasis (Heineke & van Egmond, 2017).

03

Biological functions

Immune responsePhagocytosisAntibody-dependent cellular cytotoxicityDegranulationRespiratory burstAntigen presentation
04

Disease associations

InflammationAutoimmune diseaseIgA nephropathyCancerInfection
05

Safety considerations

Risk of cytokine release syndrome (CRS) upon over-activationPotential for exacerbating IgA-mediated tissue damage in autoimmune contextsNeutropenia if targeted for cell depletionPreclinical validation challenges due to lack of CD89 ortholog in mice
06

Interacting drugs

Anti-CD89 monoclonal antibodies

3 more in the full profile.

07

Biomarkers

Soluble CD89 (sCD89)sCD89-IgA complexesCD89 surface expression on neutrophils/monocytes

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