Target intelligence / Profile preview

Fc mu receptor (FcμR)

Target
FcμR
Molecular classification
Receptor, Immunoglobulin superfamily, Transmembrane sialoglycoprotein
01

Overview

Fc mu receptor (FcμR) is a transmembrane glycoprotein widely expressed on adaptive immune cells, including B cells, T cells, and to a lesser extent, NK cells in humans (but only on B cells in mice)[3][5]. FcμR selectively recognizes and binds to the Fc portion of IgM antibodies with high affinity, especially when IgM is presented on the same cell surface (*cis* engagement)[3][4][5]. Structurally, FcμR contains a single Ig-like extracellular domain, a transmembrane domain with a conserved histidine, and a cytoplasmic tail with conserved tyrosine and serine residues involved in signaling, although these do not conform to typical ITAM/ITIM motifs found in other Fc receptors[5]. The receptor regulates key aspects of immune tolerance and homeostasis; its dysfunction leads to increased development of autoantibodies and immune dysregulation. While FcμR is not currently a therapeutic drug target, its immune-modulatory roles make it of interest for research in autoimmunity, infection, and B cell biology[3][5].

Other names
TOSOFas apoptotic inhibitory molecule 3 (FAIM3)IGMR (Immunoglobulin M receptor)IgM Fc receptor
02

Mechanism of action

Not established clinically. Hypothetically, drugs or biologics could: - Block or modulate IgM binding to FcμR to influence immune signaling - Alter B or T cell responses in autoimmunity or infection by affecting FcμR signaling

03

Biological functions

Immune responseRegulation of B cell toleranceModulation of lymphocyte functionClearance of IgM-antigen complexes
04

Disease associations

Autoimmune disease (increased autoantibodies when FcμR is disrupted)Infection (protection against pathogens depends on IgM and FcμR function)Other (possible roles in immune regulation)
05

Safety considerations

Disruption or genetic ablation of FcμR in mice leads to increased production of autoantibodies, suggesting a potential risk for autoimmunity if the receptor is blocked or dysregulatedAs FcμR is mainly expressed on lymphocytes, off-target effects on innate immune cells are less likely, but alterations in adaptive immunity could present safety challenges
06

Interacting drugs

There are no approved therapeutic drugs known to directly target Fcμ receptor at present. Current literature does not report marketed drugs or late-stage clinical candidates specifically targeting FcμR. Some research tools (e.g., anti-FcμR monoclonal antibodies) are known, but not drugs
07

Biomarkers

FcμR expression on B, T, and NK cells could serve as a biomarker for certain immune conditions, but there are no validated biomarkers for patient selection or response monitoring currently

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